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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES

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Message par polycivil Dim 23 Déc - 17:27

merci bcp mon frére Wink
polycivil
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Message par xxxx Lun 24 Déc - 15:47

certains membres du forum ont eu du mal à telecharger les deux livres de topo voici deux liens avec zschare sans mot de passe ..

tome 1
http://www.zshare.net/download/58748478b45924/
tome 2
http://www.zshare.net/download/58745315ac8710/

xxxx
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Message par polycivil Lun 24 Déc - 16:32

merci bcp console et AEK...........moi c'est l'un de ces membres
polycivil
polycivil
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Message par momo83 Lun 24 Déc - 17:56

agui a écrit:PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0849316847.01._SCLZZZZZZZ_
Bridge Engineering: Construction and Maintenance
(Principles and Applications in Engineering
)

By: W.F. Chen(Editor)Lian Duan(Editor)
ISBN-10: 0849316847 ISBN-13: 9780849316845
Publisher: CRC - 2003-02-27
Hardcover | 1 Edition | 256 Pages
12,981Mo

Description
The Principles and Application in Engineering Series is a series of convenient, economical references sharply focused on particular engineering topics and subspecialties. Each volume in this series comprises chapters carefully selected from CRC's bestselling handbooks, logically organized for optimum convenience, and thoughtfully priced to fit every budget. From the award-winning Bridge Engineering Handbook, Bridge Engineering: Construction and Maintenance takes an in-depth look at the construction engineering and maintenance aspects of steel and concrete bridges. Topics include effective project management, construction procedures and practices, construction and maintenance inspections and ratings, and bridge strengthening and rehabilitation


http://rapidshare.com/files/17603426/Bridge_Engineering_Construction_and_Maintenance_0849316847.rar

momo83

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Message par agui Lun 24 Déc - 18:25

Console a écrit:certains membres du forum ont eu du mal à telecharger les deux livres de topo voici deux liens avec zschare sans mot de passe ..

tome 1
http://www.zshare.net/download/58748478b45924/
tome 2
[url=http://www.zshare.net/download/58745315ac8710/
http://www.zshare.net/download/58745315ac8710/[/quote[/url]]

ya imane okhti wech ngoulek allah yejazik belkheir.
hanitini.
j'ai un vrai probleme de connection.
elhamdoulilah.
jazaki allahou kheirane.
wallah tu es trop gentille.
Very Happy
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Message par xxxx Lun 24 Déc - 19:24

ya pas de pb Abdelkader , si quelqu'un a un pb de telechargement de lien qu'il me le demande ....

voila un autre lien du livre de Momo bcp le reclament aussi :

http://www.4shared.com/file/32923215/6d652859/Bridge_Engineering_Construction_and_Maintenance_0849316847.html

ou en zschare

http://www.zshare.net/download/5879268e33877f/

xxxx
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Message par bilal mohamed Lun 24 Déc - 21:11

شكرا جزيلا الأخ الكريم عبد القادر و الأخت الكريمة إيمان على كل المساعدات المقدمة و جزاكم الله خيرا ..........
bilal mohamed
bilal mohamed

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Message par agui Lun 24 Déc - 21:39

bilal mohamed a écrit:شكرا جزيلا الأخ الكريم عبد القادر و الأخت الكريمة إيمان على كل المساعدات المقدمة و جزاكم الله خيرا ..........
لا شكر على واجب
أدعيلنا فقط
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Message par agui Lun 24 Déc - 23:53

agui
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Message par agui Lun 24 Déc - 23:55

PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871703777.01._SCLZZZZZZZ_
ASM Handbook Volume 1: Properties and Selection
Irons, Steels, and High-Performance Alloys 06181
By: Rudolf Steiner American Society for Metals
ISBN: 0871703777
Publisher: ASM International - 1990-04-01
Hardcover | 10th Edition | 1063 Pages
50,10Mo


Description
ASM Handbook, Vol. 01: Properties & Selection: Irons, Steels, and High-Performance Alloys
Sections include: Cast Irons, Carbon and Low-Alloy Steels, Hardenability of Carbon and Low-Alloy Steels, Fabrication Characteristics, Service Characteristics, Specialty Steels and Heat-Resistant Alloys, Materials Availability and Recycling.

Table of Contents

Cast Irons
Classification and Basic Metallurgy of Cast Iron
Gray Iron
Ductile Iron
Compacted Graphite Iron
Malleable Iron
Alloy Cast Irons
Carbon and Low-Alloy Steels
Steel Processing Technology
Microstructures, Processing, and Properties of Steels
Classification and Designation of Carbon and Low-Alloy Steels
Physical Properties of Carbon and Low-Alloy Steels
Carbon and Low-Alloy Steel Sheet and Strip
Precoated Steel Sheet
Carbon and Low-Alloy Steel Plate
Hot-Rolled Steel Bars and Shapes
Cold-Finished Steel Bars
Steel Wire Rod
Steel Wire
Threaded Steel Fasteners
Steel Springs
Steel Tubular Products
Closed-Die Forgings
High-Strength Low-Alloy Steel Forgings
Steel Castings
Bearing Steels
High-Strength Structural and High-Strength Low-Alloy Steels
Dual-Phase Steels
Ultrahigh-Strength Steels
Hardenability of Carbon and Low-Alloy Steels
Hardenable Carbon and Low-Alloy Steels
Hardenability of Carbon and Low-Alloy Steels
Hardenability Curves
Fabrication Characteristics of Carbon and Low-Alloy Steels
Sheet Formability of Steels
Bulk Formability of Steels
Machinability of Steels
Weldability of Steels
Service Characteristics of Carbon and Low-Alloy Steels
Elevated-Temperature Properties of Ferritic Steels
Effect of Neutron Irradiation on Properties of Steels
Low-Temperature Properties of Structural Steels
Fatigue Resistance of Steels
Embrittlement of Steels
Notch Toughness of Steels
Specialty Steels and Heat-Resistant Alloys
Wrought Tool Steels
P/M Tool Steels
Maraging Steels
Ferrous Powder Metallurgy Materials
Austenitic Manganese Steels
Wrought Stainless Steels
Cast Stainless Steels
Elevated-Temperature Properties of Stainless Steels
Wrought and P/M Superalloys
Polycrystalline Cast Superalloys
Directionally Solidified and Single-Crystal Superalloys
Special Engineering Topics
Strategic Materials Availability and Supply
Recycling of Iron, Steel, and Superalloys
Abbreviations, Symbols, and Tradenames


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Message par agui Lun 24 Déc - 23:58

PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv2uc8
Asm Handbook Volume 2: Properties and Selection
Nonferrous Alloys and Special-Purpose Materials - Asm Handbook

By: ASM
ISBN: 0871703785
Publisher: ASM International - 1990-11
Hardcover | 10th Edition | 1328 Pages
58,87Mo


Description
ASM Handbook, Vol. 02: Properties & Selection: Nonferrous Alloys and Special-Purpose Materials
Sections include: Specific Metals and Alloys, Special-Purpose Alloys, Superconducting Materials, Pure Metals, Recycling, and Toxicity of Metals.

Table of Contents

Specific Metals and Alloys
Introduction to Aluminum and Aluminum Alloys
Alloy and Temper Designation Systems for Aluminum and Aluminum Alloys
Aluminum Mill and Engineered Wrought Products
Properties of Wrought Aluminum and Aluminum Alloys
Aluminum Foundry Products
Properties of Cast Aluminum Alloys
Aluminum-Lithium Alloys
High-Strength Aluminum Powder Metallurgy Alloys
Introduction to Copper and Copper Alloys
Wrought Copper and Copper Alloy Products
Properties of Wrought Coppers and Copper Alloys
Selection and Application of Copper Alloy Castings
Properties of Cast Copper Alloys
Copper Powder Metallurgy Products
Beryllium-Copper and Other Beryllium-Containing Alloys
Nickel and Nickel Alloys
Cobalt and Cobalt Alloys
Selection and Application of Magnesium and Magnesium Alloys
Properties of Magnesium Alloys
Tin and Tin Alloys
Zinc and Zinc Alloys
Lead and Lead Alloys
Refractory Metals and Alloys
Introduction to Titanium and Titanium Alloys
Wrought Titanium and Titanium Alloys
Titanium and Titanium Alloy Castings
Titanium Powder Metallurgy Products
Zirconium and Hafnium
Uranium and Uranium Alloys
Beryllium
Precious Metals
Properties of Precious Metals
Rare Earth Metals
Germanium and Germanium Compounds
Gallium and Gallium Compounds
Indium and Bismuth
Special-Purpose Materials
Magnetically Soft Materials
Permanent Magnet Materials
Metallic Glasses
Electrical Resistance Alloys
Electrical Contact Materials
Thermocouple Materials
Low-Expansion Alloys
Shape Memory Alloys
Metal-Matrix Composites
Ordered Intermetallics
Dispersion-Strengthened Nickel-Base and Iron-Base Alloys
Cemented Carbides
Cermets
Superabrasives and Ultrahard Tool Materials
Structural Ceramics
Superconducting Materials
Introduction
Principles of Superconductivity
Niobium-Titanium Superconductors
Superconductors
Ternary Molybdenum Chalcogenides (Chevrel Phases)
Thin-Film Materials
High-Temperature Superconductors for Wires and Tapes
Pure Metals
Preparation and Characterization of Pure Metals
Periodic Table of the Elements
Properties of Pure Metals
Special Engineering Topics
Recycling of Nonferrous Alloys
Toxicity of Metals

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Message par agui Mar 25 Déc - 0:00

PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv3db3

Asm Handbook Volume 3 Alloy Phase Diagrams Asm Handbook
By: ASM
ISBN: 0871703815
Publisher: ASM International - 1992-12
Hardcover | 10th Edition | 512 Pages
66,53Mo

Description

The book also contains more than 1,000 binary disgrams, each plotted in weight percent (with atomic percent as an auxiliary scale) and accompanied by a table of crystallographic data. A binary alloy index lists all 20,779 systems and gives the most recent source for information about each. It also contains about 300 ternary diagrams, also plotted in a weight scale. The appendices include the melting and boiling points of the elements, their allotropic transformation and magnetic transition temperatures and their crystal structures.

Table of Contents

Introduction to Alloy Phase Diagrams
Binary Phase Diagrams
Introduction to Binary Alloy Phase Diagrams
Ag (Silver)
Al (Aluminum)
As (Arsenic)
Au (Gold)
B (Boron)
B (Barium)
Be (Beryllium)
Bi (Bismuth)
C (Carbon )
C (Calcium)
Cd (Cadmium)
Ce (Cerium)
Cl (Chlorine)
Co (Cobalt)
Cr (Chromium)
Cs (Cesium)
Cu (Copper)
Dy (Dysprosium)
Er (Erbium)
Eu (Europium)
Fe (Iron)
G (Gallium)
Gd (Gadolinium)
Ge (Germanium)
H (Hydrogen)
Hf (Hafnium)
Hg (Mercury)
Ho (Holmium)
In (Indium)
Ir (Iridium)
K (Potassium)
L (Lanthanum)
Li (Lithium)
Lu (Lutetium)
Mg (Magnesium)
Mn (Manganese)
Mo (Molybdenum)
N (Nitrogen)
N (Sodium)
Nb (Niobium)
Nd (Neodymium)
Ni (Nickel)
Np (Neptunium)
O (Oxygen)
Os (Osmium)
P (Phosphorus)
Pb (Lead)
Pd (Palladium)
Pr (Praseodymium)
Pt (Platinum)
Pu (Plutonium)
Rb (Rubidium)
Re (Rhenium)
Rh (Rhodium)
Ru (Ruthenium)
S (Sulfur)
Sb (Antimony)
Sc (Scandium)
Se (Selenium)
Si (Silicon)
Sm (Samarium)
Sn (Tin)
Sr (Strontium)
T (Tantalum)
Tb (Terbium)
Te (Tellurium)
Th (Thorium)
Ti (Titanium)
Tl (Thallium)
U (Uranium)
V (Vanadium)
W (Tungsten)
Y (Yttrium)
Yb (Ytterbium)
Zn (Zinc)
Zr (Zirconium)
Ternary Phase Diagrams
Introduction to Ternary Alloy Phase Diagrams
Ag (Silver)
Al (Aluminum)
Au (Gold)
B (Boron)
C (Carbon)
Cd (Cadium)
Co (Cobalt)
Cr (Chromium)
Cu (Copper)
Fe (Iron)
Mg (Magnesium)
Mn (Manganese)
Mo (Molybdenum)
N (Nitrogen)
Nb (Niobium)
Ni (Nickel)
Pb (Lead)
Sb (Antimony)
Si (Silicon)
Sn (Tin)
Ti (Titanium)
V (Vanadium)
W (Tungsten)
Zn (Zinc)



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Message par agui Mar 25 Déc - 0:02

PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv4uq5

Asm Handbook Volume 4 Heat Treating Asm Handbook
By: ASM
ISBN: 0871703793
Publisher: ASM International - 1991-06
Hardcover | 10th Edition | 1012 Pages
44,43Mo


Description

You'll find all heat treating topics covered in this one essential volume. Contents include: Heat Treating of Steel--quenching, tempering and annealing, continuous annealing, quantitative methods to predict hardenability.

Table of Contents

Heat Treating of Steel
Principles of Heat Treating of Steels
Quantitative Prediction of Transformation Hardening in Steels
Stress-Relief Heat Treating of Steel
Normalizing of Steel
Annealing of Steel
Continuous Annealing of Steel
Quenching of Steel
Tempering of Steel
Martempering of Steel
Austempering of Steel
Induction Heat Treating of Steel
Cold Treating and Cryogenic Treatment of Steel
Heat Treating of Ultrahigh-Strength Steels
Heat Treating of Maraging Steels
Heat Treating of Powder Metallurgy Steels
Thermomechanical Processing of Steels
Surface Hardening of Steel
Introduction to Surface Hardening of Steels
Flame Hardening of Steels
Laser Surface Hardening of Steels
Electron Beam Surface Hardening of Steels
Gas Carburizing of Steels
Pack Carburizing of Steels
Liquid Carburizing and Cyaniding of Steels
Vacuum Carburizing of Steels
Plasm (Ion) Carburizing of Steels
Microstructures and Properties of Carburized Steels
Carbonitriding of Steels
Gas Nitriding of Steels
Liquid Nitriding of Steels
Plasm (Ion) Nitriding of Steels
Gaseous and Plasm Nitrocarburizing of Steels
Boriding (Boronizing) of Steels
Thermoreactive Deposition/Diffusion Process for Surface Hardening of Steels
Methods of Measuring Case Depth in Steels
Heat-Treating Equipment
Types of Heat-Treating Furnaces
Salt Bath Heat-Treating Equipment
Fluidized-Bed Heat-Treating Equipment
Heat Treating in Vacuum Furnaces and Auxiliary Equipment
Heat-Resistant Materials for Heat-Treating Furnace Parts, Trays, and Fixtures
Energy-Efficient Heat-Treating Furnace Design and Operation
Process and Quality Control Considerations
Temperature Control in Heat Treating
Furnace Atmospheres for Heat Treating
Furnace Atmosphere Control in Heat Treating
Control of Surface Carbon Content in Heat Treating of Steel
Evaluation of Carbon Control in Processed Parts
Defects and Distortion in Heat-Treated Parts
Statistical Process Control of Heat-Treating Operations
Computerized Properties Prediction and Technology Planning in Heat Treatment of Steels
Furnace Safety in Heat Treating
Heat Treating of Cast Irons
Introduction to Heat Treating of Cast Irons
Heat Treating of Gray Irons
Heat Treating of Ductile Irons
Heat Treating of Malleable Irons
Heat Treating of High-Alloy Irons
Heat Treating of Tool Steels
Introduction to Heat Treating of Tool Steels
Processes and Furnace Equipment for Heat Treating of Tool Steels
Heat Treating of Specific Classes of Tool Steels
Control of Distortion in Tool Steels
Heat Treating of Stainless Steels and Heat-Resistant Alloys
Heat Treating of Stainless Steels
Heat Treating of Superalloys
Heat Treating of Refractory Metals and Alloys
Heat Treating of Nonferrous Alloys
Principles of Heat Treating of Nonferrous Alloys
Heat Treating of Aluminum Alloys
Heat Treating of Copper Alloys
Heat Treating of Magnesium Alloys
Heat Treating of Nickel and Nickel Alloys
Heat Treating of Titanium and Titanium Alloys
Heat Treating of Tin-Rich Alloys
Heat Treating of Lead and Lead Alloys
Heat Treating of Uranium and Uranium Alloys
Annealing of Precious Metals

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Message par agui Mar 25 Déc - 0:04

PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv5cr9

Asm Handbook Volume 5 Surface Engineering - Asm Handbook
By: Faith Reidenbach Editor
ISBN: 087170384X
Publisher: ASM International - 1994-12
Hardcover | 10th Edition | 1056 Pages
29,06Mo


Description

You'll learn all the options available to improve the performance of metallic and selected nonmetallic parts along with procedures that can be utilized to enhance appearance and corrosion resistance, as well as wear, thermal, and electrical properties. You'll also find hundreds of tables, graphs, and charts that describe process parameters, solution compositions, operating conditions, specifications and the like along with numerous photographs and schematic drawings of processes and equipment.

Table of Contents

Surface Cleaning
Classification and Selection of Cleaning Processes
Alkaline Cleaning
Solvent Cold Cleaning and Vapor Degreasing
Emulsion Cleaning
Molten Salt Bath Cleaning
Ultrasonic Cleaning
Acid Cleaning
Mechanical Cleaning Systems
Pickling and Descaling
Finishing Methods
Classification and Selection of Finishing Processes
Finishing Methods Using Defined Cutting Edges
Finishing Methods Using Multipoint or Random Cutting Edges
Nonabrasive Finishing Methods
Mass Finishing
Shot Peening
Topography of Surfaces
Microstructural Analysis of Finished Surfaces
Residual Effects of Finishing Methods
Thermal Aspects of Surface Finishing Processes
Selection, Application, and Disposal of Finishing Fluids
Influence of Work Material Properties on Finishing Methods
Plating and Electroplating
Copper Plating
Industrial (Hard) Chromium Plating
Decorative Chromium Plating
Nickel Plating
Iron Plating
Cadmium Plating
Zinc Plating
Indium Plating
Tin Plating
Lead Plating
Silver Plating
Gold Plating
Platinum-Group Metals Plating
Copper Alloy Plating
Tin Alloy Plating
Zinc Alloy Plating
Nickel Alloy Plating
Chromium Alloy Plating
Multiple-Layer Alloy Plating
Selective (Brush) Plating
Pulsed-Current Plating
Electroforming
Electroless Nickel Plating
Electroless Copper Plating
Electroless Gold Plating
Electroless Alloy Deposition
Mechanical Plating
Dip, Barrier, and Chemical Conversion Coatings
Surface Preparation for Continuously Applied Coatings
Continuous Hot Dip Coatings
Continuous Electrodeposited Coatings for Steel Strip
Batch Hot Dip Galvanized Coatings
Babbitting
Phosphate Coatings
Chromate Conversion Coatings
Rust-Preventive Compounds
Painting
Elastomeric Coatings for Automotive Plastics
Porcelain Enameling
Ceramic Coatings and Linings
Anodizing
Vacuum and Controlled-Atmosphere Coating and Surface Modification Processes
Thermal Spray Coatings
Chemical Vapor Deposition of Nonsemiconductor Materials
Chemical Vapor Deposition of Semiconductor Materials
Plasma-Enhanced Chemical Vapor Deposition
Growth and Growth-Related Properties of Films Formed by Physical Vapor Deposition
Vacuum Deposition, Reactive Evaporation, and Gas Evaporation
Sputter Deposition
Ion Plating
Ion-Beam-Assisted Deposition
Arc Deposition
Ion Implantation
Diffusion Coatings
Pulsed-Laser Deposition
Testing and Characterization of Coatings and Thin Films
Film Thickness Measurements Using Optical Techniques
Corrosion Testing of Coatings
Evaluation of Mechanical Properties of Thin Films
Stress Determination for Coatings
Testing of Stability and Thermal Properties of Thermal Barrier Coatings
Microstructural Characterization of Coatings and Thin Films
Surface and Interface Analysis of Coatings and Thin Films
Overview of Wear and Erosion Testing of Coatings
Surface Engineering of Irons and Steels
Surface Engineering of Cast Irons
Surface Engineering of Carbon and Alloy Steels
Surface Engineering of Stainless Steels
Surface Engineering of Specialty Steels
Surface Engineering of Nonferrous Metals
Surface Engineering of Heat-Resistant Alloys
Surface Engineering of Aluminum and Aluminum Alloys
Surface Engineering of Copper and Copper Alloys
Surface Engineering of Magnesium Alloys
Surface Engineering of Titanium and Titanium Alloys
Surface Engineering of Zirconium and Hafnium
Surface Engineering of Refractory Metals and Alloys
Surface Engineering of Nickel and Nickel Alloys
Surface Engineering of Zinc Alloys
Surface Engineering of Selected Nonmetallic Materials
Glazes and Enamel Coatings for Ceramics and Glasses
Surface Engineering for Chemical Activity
Protective Coatings for Carbon-Carbon Composites
Plasm Surface Engineering of Plastics
Surface Engineering of Carbide, Cermet, and Ceramic Cutting Tools
Environmental Protection Issues
Environmental Regulation of Surface Engineering
Cadmium Elimination in Surface Engineering
Chromium Elimination in Surface Engineering
Vapor Degreasing Alternatives
Compliant Organic Coatings
Compliant Wipe Solvent Cleaners



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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871703823.01._SCLZZZZZZZ_
Asm Handbook Volume 6: Welding, Brazing, and Soldering
By: Kelly Ferjutz Joseph R. Davis Nikki D. Wheaton Unknown
ISBN: 0871703823
Publisher: ASM International - 1994-01
Hardcover | 10th Edition | 1299 Pages
43,83Mo


Description

Volume 6 is the most comprehensive reference book ever produced on the major joining technologies and their applications to engineered materials--90% of its contents are totally new to the ASM Handbook Series. With over 500 illustrations and 400 tables, this book includes practical advice on consumable selection and procedure development, as well as joining fundamentals.

Table of Contents

Fundamentals of Welding
Energy Sources Used for Fusion Welding
Heat Flow in Fusion Welding
Fluid Flow Phenomen During Welding
Transfer of Heat and Mass to the Base Metal in Gas-Metal Arc Welding
Arc Physics of Gas-Tungsten Arc Welding
Power Sources for Welding
Fundamentals of Weld Solidification
Nature and Behavior of Fluxes Used for Welding
Shielding Gases for Welding
Solid-State Transformations in Weldments
Cracking Phenomen Associated With Welding
Characterization of Welds
Fundamentals of Brazing and Soldering
Introduction to Brazing and Soldering
Fundamentals of Brazing
Fundamentals of Soldering
Fundamentals of Solid-State Welding
Introduction to Solid-State Welding
Fundamentals of Metal and Metal-to-Ceramic Adhesion
Fundamentals of Friction Welding
Fundamentals of Diffusion Bonding
Fundamentals of Explosion Welding
Mechanical Properties of Soft-Interlayer Solid-State Welds
Fusion Welding Processes
Shielded Metal Arc Welding
Gas-Metal Arc Welding
Flux-Cored Arc Welding
Gas-Tungsten Arc Welding
Plasm Arc Welding
Carbon Arc Welding
Submerged Arc Welding
Stud Arc Welding
Capacitor Discharge Stud Welding
Plasma-MIG Welding
Resistance Spot Welding
Projection Welding
Resistance Seam Welding
Flash Welding
Upset Welding
High-Frequency Welding
Electron-Beam Welding
Laser-Beam Welding
Electroslag and Electrogas Welding
Oxyfuel Gas Welding
Thermite Welding
Solid-State Welding, Brazing, and Soldering Processes
High-Temperature Solid-State Welding
Low-Temperature Solid-State Welding
Explosion Welding
Forge Welding
Cold Welding
Coextrusion Welding
Roll Welding
Friction Welding
Radial Friction Welding
Friction Surfacing
Ultrasonic Welding
Torch Brazing
Furnace Brazing
Induction Brazing
Dip Brazing
Resistance Brazing
Diffusion Brazing
Exothermic Brazing
Brazing With Clad Brazing Materials
Iron Soldering
Torch Soldering
Furnace and Infrared Soldering
Dip Soldering
Resistance Soldering
Laser Soldering
Hot Gas Soldering
Induction Soldering
Wave Soldering
Vapor-Phase Soldering
Material Requirements for Service Conditions
Material Requirements for Service Conditions
Selection of Carbon and Low-Alloy Steels
Introduction to the Selection of Carbon and Low-Alloy Steels
Influence of Welding on Steel Weldment Soundness
Influence of Welding on Steel Weldment Properties
Selection of Stainless Steels
Introduction to the Selection of Stainless Steels
Selection of Wrought Martensitic Stainless Steels
Selection of Wrought Ferritic Stainless Steels
Selection of Wrought Austenitic Stainless Steels
Selection of Wrought Duplex Stainless Steels
Selection of Wrought Precipitation-Hardening Stainless Steels
Selection of Cast Stainless Steels
Dissimilar Welds With Stainless Steels
Selection of Nonferrous Low-Temperature Materials
Selection and Weldability of Conventional Titanium Alloys
Selection and Weldability of Advanced Titanium-Base Alloys
Selection and Weldability of Heat-Treatable Aluminum Alloys
Selection and Weldability of Non-Heat-Treatable Aluminum Alloys
Selection and Weldability of Dispersion-Strengthened Aluminum Alloys
Selection and Weldability of Aluminum-Lithium Alloys
Selection and Weldability of Aluminum Metal-Matrix Composites
Selection of Nonferrous High-Temperature Materials
General Welding Characteristics of High-Temperature Materials
Welding Metallurgy of Nonferrous High-Temperature Materials
Postweld Heat Treatment of Nonferrous High-Temperature Materials
Special Metallurgical Welding Considerations for Nickel and Cobalt Alloys and Superalloys
Special Metallurgical Welding Considerations for Refractory Metals
Selection of Nonferrous Corrosion-Resistant Materials
Introduction to the Selection of Nonferrous Corrosion-Resistant Materials
Selection of Nickel, Nickel-Copper, Nickel-Chromium, and Nickel-Chromium-Iron Alloys
Selection of Nickel-Base Corrosion-Resistant Alloys Containing Molybdenum
Selection of Cobalt-, Titanium-, Zirconium-, and Tantalum-Base Corrosion-Resistant Alloys
Weldability Testing
Weldability Testing
Brazeability and Solderability of Engineering Materials
Brazeability and Solderability of Engineering Materials
Practice Considerations for Arc Welding
Arc Welding of Carbon Steels
Welding of Low-Alloy Steels
Welding of Stainless Steels
Welding of Cast Irons
Welding of Aluminum Alloys
Welding of Nickel Alloys
Welding of Copper Alloys
Welding of Magnesium Alloys
Welding of Titanium Alloys
Welding of Zirconium Alloys
Hardfacing, Weld Cladding, and Dissimilar Metal Joining
Practice Considerations for Resistance Welding & High-Energy-Beam Welding
Procedure Development and Practice Considerations for Resistance Welding
Procedure Development and Practice Considerations for Electron-Beam Welding
Procedure Development and Practice Considerations for Laser-Beam Welding
Procedure Development and Practice Considerations for Solid-State Welding
Procedure Development and Practice Considerations for Diffusion Welding
Procedure Development and Practice Considerations for Inerti and Direct-Drive Friction Welding
Procedure Development and Practice Considerations for Ultrasonic Welding
Procedure Development and Practice Considerations for Explosion Welding
Practice Considerations for Brazing and Soldering
Selection Criteri for Brazing and Soldering Consumables
Brazing of Cast Irons and Carbon Steels
Brazing of Stainless Steels
Brazing of Heat-Resistant Alloys, Low-Alloy Steels, and Tool Steels
Brazing of Copper, Copper Alloys, and Precious Metals
Brazing of Aluminum Alloys
Brazing of Refractory and Reactive Metals
Brazing of Ceramic and Ceramic-to-Metal Joints
Application of Clad Brazing Materials
General Soldering
Soldering in Electronic Applications
Special Welding and Joining Topics
Introduction to Special Welding and Joining Topics
Thermal Spray Coatings
Underwater Welding
Welding for Cryogenic Service
Welding in Space and Low-Gravity Environments
Joining of Organic-Matrix Composites
Joining of Oxide-Dispersion-Strengthened Materials
Composite-to-Metal Joining
Welding of Plastics
Intelligent Automation for Joining Technology
Corrosion of Weldments
Joint Evaluation and Quality Control
Overview of Weld Discontinuities
Inspection of Welded Joints
Weld Procedure Qualification
Residual Stresses and Distortion
Repair Welding
Fitness-for-Service Assessment of Welded Structures
Evaluation and Quality Control of Brazed Joints
Evaluation and Quality Control of Soldered Joints
Modeling of Joining Processes
Numerical Aspects of Modeling Welds
Characterization and Modeling of the Heat Source
Validation Strategies for Heat-Affected Zone and Fluid-Flow Calculations
Cutting Processes
Oxyfuel Gas Cutting
Plasm Arc Cutting
Air-Carbon Arc Cutting
Mechanical Cutting for Weld Preparation
Safe Practices
Safe Practices



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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv7wv0

Asm HandbookVolume 7: Powder Metal Technologies and Applications
By: Asm International Handbook Committee Corporate Author Peter W. Lee(Editor
ISBN: 0871703874
Publisher: ASM International - 1998-09
Hardcover | 2r.e. Edition | 1146 Pages
55,74Mo

Description

Your single source for practical engineering information on sintering practices, tool design, P/M metallography, dimensional control, part design, powders, binders, lubricants, and the processing, properties, and performance of P/M materials in different production technologies and applications.

Table of Contents

Introduction
History of Powder Metallurgy
Powder Metallurgy Methods and Design
Advances in Powder Metallurgy Applications
Powder Metallurgy Process Modeling and Design
Metal Powder Production and Characterization
Introduction to Metal Powder Production and Characterization
Atomization
Milling of Brittle and Ductile Materials
Chemical and Electrolytic Methods of Powder Production
Ultrafine and Nanophase Powders
Mechanical Alloying
Spray Drying and Granulation
Rotating Electrode Process
Blending and Premixing of Metal Powders and Binders
Effect of Blending Techniques on Properties of Metal Powder Mixes
Production of Iron Powder
Production of Steel Powders
Production of Copper Powders
Production of Copper Alloy Powders
Production of Tin Powders
Production of Aluminum and Aluminum-Alloy Powder
Production of Titanium Powder
Production of Nickel-Base Powders
Production of Cobalt-Base Powders
Production of Precious Metal Powders: Silver, Gold, Palladium, and Platinum
Production of Refractory Metal Powders
Production of Beryllium Powders
Sampling and Classification of Powders
Bulk and Surface Characterization of Powders
Particle Size and Size Distribution in Metal Powders
Sieve and Fisher Subsieve Analysis of Metal Powders
Sedimentation Methods for Classifying Metal Powders
Electric and Optical Sensing Zone Analysis of Powders
Light Scattering Measurement of Metal Powders
Time of Flight Measurement of Metal Powders
Particle Image Analysis
Surface Area, Density, and Porosity of Powders
Bulk Properties of Powders
Compressibility and Compactibility of Metal Powders
Shaping and Consolidation Technologies
Powder Shaping and Consolidation Technologies
Powder Treatments and Lubrication
Mechanical Behavior of Metal Powders and Powder Compaction Modeling
Powder Metallurgy Presses and Tooling
Powder Injection Molding
Binder-Assisted Extrusion
Warm Compaction
Cold Isostatic Pressing
Roll Compacting of Metal Powders
Spray Forming
Thermal Spray Forming of Materials
Slip Casting of Metals
Powder Metallurgy Methods for Rapid Prototyping
Consolidation Principles and Process Modeling
Sintering Furnaces and Atmospheres
Production Sintering Practices
Consolidation of Ultrafine and Nanocrystalline Powder
Reactive Sintering
Combustion Synthesis of Advanced Materials
Infiltration
Liquid-Phase Sintering
Cold Sintering—High Pressure Consolidation
Field-Activated Sintering
Principles and Process Modeling of Higher-Density Consolidation
Hot Isostatic Pressing of Metal Powders
Extrusion of Metal Powders
Forging and Hot Pressing
Pneumatic Isostatic Forging
Secondary Operations and Quality Control
Heat Treatment of Ferrous Powder Metallurgy Parts
Welding and Joining Processes
Techniques for Improving Dimensional Tolerance of Powder Metallurgy Parts
Machinability of P/M Steels
Machining of Powder Metallurgy Materials
Resin Impregnation of Powder Metal Parts
Planning and Quality Control of Powder Metallurgy Parts Production
Quality Control and Inspection of Powder Metallurgy Secondary Operations
Testing and Evaluation of Powder Metallurgy Parts
Metallography of Powder Metallurgy Materials
Materials Systems, Properties, and Applications
Ferrous Powder Metallurgy Materials
Copper-Infiltrated Steels
Powder Metallurgy Stainless Steels
Particle Metallurgy Tool Steels
Powder Forged Steel
High-Temperature Sintering of Ferrous Powder Metallurgy Components
Conventional Aluminum Powder Metallurgy Alloys
Advanced Aluminum Powder Metallurgy Alloys and Composites
Copper Powder Metallurgy Alloys and Composites
Titanium Powder Metallurgy Alloys and Composites
Powder Metallurgy Superalloys
Powder Metallurgy Refractory Metals
Powder Metallurgy Tungsten Heavy Alloys
Powder Metallurgy Cermets and Cemented Carbides
Powder Metallurgy Beryllium
Mechanical Properties of High-Performance Powder Metallurgy Parts
Fatigue and Fracture Control for Powder Metallurgy Components
Wear Resistance of Powder Metallurgy Alloys
Corrosion-Resistant Powder Metallurgy Alloys
Magnetic Materials and Properties for Powder Metallurgy Part Applications
Powder Metallurgy Electrical Contact Materials
Porous Powder Metallurgy Technology
Metallic Foams
Friction Powder Metallurgy Materials
Powder Metallurgy Bearings
Powder Metallurgy Gears
Metal and Alloy Powders for Welding, Hardfacing, Brazing, and Soldering
Specialty Applications of Metal Powders
Appendices
Appendix : Mechanical Properties of Ferrous Powder Materials
Appendix : Powder Metallurgy Standards
Appendix : Examples of Powder Metallurgy Parts
Abbreviations and Symbols



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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871703890.01._SCLZZZZZZZ_

Asm Handbook Volume 8: Mechanical Testing and Evaluation
By: Howard Kuhn(Editor) Dana Medlin Editor
ISBN: 0871703890
Publisher: ASM International - 2000-09
Hardcover | 10th Edition | 998 Pages
57,04MO

Description

This newly revised and comprehensive ASM Handbook contains over 50 all-new articles plus newly revised updates on standard test methods for tensile, compressive, shear, hardness, creep, fatigue, and fracture-toughness properties. Expanded coverage also includes new articles on surface wear testing, adhesion testing, nanomechanical testing, Hopkinson bar techniques, dynamic indentation testing, fatigue testing, residual-stress measurements, and extensive new coverage on the mechanical testing of engineering components such as gears, bearings, fasteners, adhesive-bonded joints, piping, and welds.


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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871707063.01._SCLZZZZZZZ_

Asm Handbook Volume 9: Metallography And Microstructures
By: George F. Vander Voort Editor
ISBN: 0871707063
Publisher: ASM International - 2004-12-30
Hardcover | 1184 Pages


Description

Metallography and Microstructures, Volume 9 of the ASM Handbook, is an essential reference for anyone who specifies, performs, monitors, evaluates, or uses metallurgical analyses for production quality control, research, or educational training. The new edition is a comprehensive reference that features over 30 new articles with substantive updates on metallographic techniques and microstructural interpretation. Expanded and new coverage includes:
>New articles on field metallography, digital imaging, and quantitative image analysis, quantitative metallography, and color metallography
>All-new articles on the metallography and microstructural interpretation of cast irons, carbon and low-alloy steels, aluminum alloys, precious-metal alloys, titanium alloys, ceramics, and thermal spray coatings
>Substantially revised articles on metallography and microstructural interpretation of tool steels, stainless steels, copper alloys, powder metallurgy alloys, and cemented carbides
>Hundreds of new micrographs throughout the volume
>More integrated in-text citation of micrograph images with respect to discussions on preparation techniques and alloy metallurgy
>Updated coverage on specimen-preparation techniques for both manual methods and semi-automatic machines
>Practical coverage on sectioning and specimen extraction
>New and revised articles on structures from solidification and solid-state transformations
>Laboratory safety guide
>New expanded color section
Metallography and Microstructures is an essential reference for anyone with an interest in the analysis of metals.


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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv10cp6

Metals Handbook Volume 10: Materials Characterization
By: George M. Crankovic Editor
ISBN: 0871700166
Publisher: ASM International - 1989-11
Hardcover | 9th Edition | 761 Pages
17,98Mo


Description

Provides you with an easily understood reference book on modern analytical techniques. It emphasizes the practical rather the theoretical, describing the most common applications and limitations of each method

Table of Contents

Introduction to Materials Characterization
Introduction to Materials Characterization
How To Use the Handbook
Sampling
Optical and X-Ray Spectroscopy
Optical Emission Spectroscopy
Inductively Coupled Plasm Atomic Emission Spectroscopy
Atomic Absorption Spectrometry
Ultraviolet/Visible Absorption Spectroscopy
Molecular Fluorescence Spectroscopy
X-Ray Spectrometry
Particle-Induced X-Ray Emission
Infrared Spectroscopy
Raman Spectroscopy
Mass Spectroscopy
Spark Source Mass Spectrometry
Gas Analysis by Mass Spectrometry
Classical, Electrochemical, and Radiochemical Analysis
Classical Wet Analytical Chemistry
Potentiometric Membrane Electrodes
Voltammetry
Electrogravimetry
Electrometric Titration
Controlled-Potential Coulometry
Elemental and Functional Group Analysis
High-Temperature Combustion
Inert Gas Fusion
Neutron Activation Analysis
Radioanalysis
Resonance Methods
Electron Spin Resonance
Ferromagnetic Resonance
Nuclear Magnetic Resonance
Mössbauer Spectroscopy
Metallographic Techniques
Optical Metallography
Image Analysis
Diffraction Methods
Introduction to Diffraction Methods
X-Ray Powder Diffraction
Single-Crystal X-Ray Diffraction
Crystallographic Texture Measurement and Analysis
X-Ray Topography
X-Ray Diffraction Residual Stress Techniques
Radial Distribution Function Analysis
Small-Angle X-Ray and Neutron Scattering
Extended X-Ray Absorption Fine Structure
Neutron Diffraction
Electron Optical Methods
Analytical Transmission Electron Microscopy
Scanning Electron Microscopy
Electron Probe X-Ray Microanalysis
Low-Energy Electron Diffraction
Electron or X-Ray Spectroscopic Methods
Auger Electron Spectroscopy
X-Ray Photoelectron Spectroscopy
Methods Based on Sputtering or Scattering Phenomena
Field Ion Microscopy and Atom Probe Microanalysis
Low-Energy Ion-Scattering Spectroscopy
Secondary Ion Mass Spectroscopy
Rutherford Backscattering Spectrometry
Chromatography
Gas Chromatography/Mass Spectrometry
Liquid Chromatography
Ion Chromatography
.


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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv11lb8

Asm Handbook Volume 11: Failure Analysis and Prevention
By: W. T. Becker R. J. Shipley
ISBN: 0871707047
Publisher: American Society for Metals - 2002-07
Hardcover | 10th Edition | 1164 Pages


Description

If you are a manufacturing engineer, component designer, a materials failure analyst, or if you have a general interest in the nature and prevention of engineering failures, you will be interested in the new and substantial revision of ASM Handbook, Volume 11, Failure Analysis and Prevention. The new Volume 11, with a focus on the root causes of failure, describes the principles, practices, and analytical techniques of failure analysis, so that root causes are properly identified and corrected for the ultimate objective of failure prevention.


Table of Contents

Engineering Aspects of Failure and Prevention
Introduction to Failure Analysis and Prevention
Materials Selection for Failure Prevention
Design Review for Failure Analysis and Prevention
Failure Modes and Effects Analysis
Reliability-Centered Maintenance
Products Liability and Design
Manufacturing Aspects of Failure and Prevention
Failures Related to Metalworking
Failures Related to Casting
Failures Related to Welding
Failures Related to Heat Treating Operations
Structural Life Assessment Methods
Failure Analysis and Life Assessment of Structural Components and Equipment
Failure Assessment Diagrams
Analysis Methods for Probabilistic Life Assessment
Nondestructive Evaluation and Life Assessment
Fatigue-Life Assessment
Elevated-Temperature Life Assessment for Turbine Components, Piping, and Tubing
Principles and Practice of Failure Analysis
The Failure Analysis Process: An Overview
Organization of a Failure Investigation
Conducting a Failure Examination
Determination and Classification of Damage
Examination of Damage and Material Evaluation
Modeling and Accident Reconstruction
Finite Element Modeling in Failure Analysis
Tools and Techniques in Failure Analysis
Practices in Failure Analysis
Photography in Failure Analysis
Chemical Analysis of Metals in Failure Analysis
Characterization of Plastics in Failure Analysis
Stress Analysis and Fracture Mechanics
X-Ray Diffraction Residual Stress Measurement in Failure Analysis
Metallographic Techniques in Failure Analysis
Scanning Electron Microscopy
Chemical Characterizaton of Surfaces
Quantitative Fractography
Fracture
Fracture Appearance and Mechanisms of Deformation and Fracture
Mechanisms and Appearances of Ductile and Brittle Fracture in Metals
Fatigue Fracture Appearances
Intergranular Fracture
Fracture of Plastics
Fracture Modes and Appearances in Ceramics
Overload Failures
Fatigue Failures
Creep and Stress Rupture Failures
Thermomechanical Fatigue: Mechanisms and Practical Life Analysis
Corrosion-Related Failures
Analysis and Prevention of Corrosion-Related Failures
Forms of Corrosion
Effect of Environment on the Performance of Plastics
Corrosion Failures of Industrial Refractories and Technical Ceramics
Hydrogen Damage and Embrittlement
Stress-Corrosion Cracking
Liquid-Metal and Solid-Metal Induced Embrittlement
High-Temperature Corrosion-Related Failures
Biological Corrosion Failures
Wear Failures
Fundamentals of Wear Failures
Abrasive Wear Failures
Fretting Wear Failures
Rolling-Contact Fatigue
Rolling Contact Fatigue of Ceramics
Impact Wear Failures
Spalling from Impact Events
Corrosive Wear Failures
Erosive Wear Failures
Cavitation Erosion
Liquid-Impact Erosion
Wear Failures of Plastics
Wear Failures of Reinforced Polymers
Failures of Shafts
Failures of Sliding Bearings
Failures of Rolling-Element Bearings
Failures of Lifting Equipment
Failures of Mechanical Fasteners
Failures of Springs
Failures of Tools and Dies
Failures of Gears
Failures of Boilers and Related Equipment
Failures of Heat Exchangers
Failures of Pressure Vessels
Failures of Metallic Orthopedic Implants
Failures of Pipelines
Failures of Bridge Components
Failures of Locomotive Axles
Distortion
Analysis of Distortion and Deformation
Supplementary Information
Glossary
Metric Conversion Guide
Abbreviations and Symbols
Directory of Examples of Failure Analysis


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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871700182.01._SCLZZZZZZZ_

Metals Handbook Volume 12: Fractography
By: Kathleen Mills ASM
ISBN: 0871700182
Publisher: ASM International - 1989-11
Hardcover | 9th Edition | 517 Pages
66,06Mo


Description

Provides engineers with enhanced capability for recognizing and interpreting the various features of a fracture, enabling you to perform improved failure analyses and to better determine the relationship of the fracture mode to the microstructure.

Table of Contents

Fractography: Principles and Practices
History of Fractography
Modes of Fracture
Preparation and Preservation of Fracture Specimens
Photography of Fractured Parts and Fracture Surfaces
Visual Examination and Light Microscopy
Scanning Electron Microscopy
Transmission Electron Microscopy
Quantitative Fractography
Fractal Analysis of Fracture Surfaces
Atlas of Fractographs
Introduction
Pure Irons
Gray Irons
Ductile Irons
Malleable Irons/White Irons
Low-Carbon Steels
Medium-Carbon Steels
High-Carbon Steels
AISI/SAE Alloy Steels
ASTM/ASME Alloy Steels
Austenitic Stainless Steels
Martensitic Stainless Steels
Precipitation-Hardening Stainless Steels
Tool Steels
Maraging Steels
Iron-Base Superalloys
Nickel-Base Superalloys
Nickel Alloys
Cobalt Alloys
Copper Alloys
Cast Aluminum Alloys
Wrought Aluminum Alloys
P/M Aluminum Alloys
Titanium Alloys
Miscellaneous Metals and Alloys
Metal-Matrix Composites
Cemented Carbides
Ceramics
Concrete and Asphalt
Resin-Matrix Composites
Polymers
Electronic Materials
Supplementary Information
Abbreviations and Symbols


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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871707055.01._SCLZZZZZZZ_

Asm Handbook Volume 13 A: Corrosion : Fundamentals, Testing, and Protection
By: Bernard S. Jr. Covino(Editor) Stephen D. Cramer Editor
ISBN: 0871707055
Publisher: ASM International - 2003-11
Hardcover | 10th Edition | 1135 Pages
74,03Mo


Description

The purpose of ASM Handbook, Volume 13A: Corrosion: Fundamentals, Testing, and Protection is to help engineers and designers understand corrosion so that they can solve existing corrosion problems and prevent future ones. It should be the first book you select when researching a corrosion problem. The coverage of the volume has been completely revised to ensure that it is the most comprehensive, practical, and up-to-date resource available. Each article is indexed to other appropriate sections of the Handbook, and each provides a road map to the thousands of individual bibliographical references that were used to compile the information.



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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871700204.01._SCLZZZZZZZ_

ASM Metals Handbook Volume 14: Forming and Forging
By: Joseph R. Davis S. L. Semiatin American Society for Metals
ISBN: 0871700204
Publisher: ASM International - 1989-04
Hardcover | 9th Edition | 978 Pages
52,84Mo

description

Provides an in-depth review of a number of processes recently introduced or that have come into acceptance such as radial, rotary (orbital), precision, powder, and isothermal/hot-die forging. Plus superplastic sheet forming, and abrasive waterjet and laser cutting. New materials in this book (containing 1,200 illustrations and 250 tables) pertains to the development of thermomechanical processing, particularly with regard to aerospace alloys, and the development of concepts and tests to determine metal workability/formability relationships.


Table of Contents

Introduction to Forming and Forging Processes
Forging Equipment and Dies
Hammers and Presses for Forging
Selection of Forging Equipment
Dies and Die Materials for Hot Forging
Forging Processes
Open-Die Forging
Closed-Die Forging in Hammers and Presses
Hot Upset Forging
Roll Forging
High-Energy-Rate Forging
Ring Rolling
Rotary Swaging of Bars and Tubes
Radial Forging
Isothermal and Hot-Die Forging
Precision Forging
Rotary Forging
Coining
Powder Forging
Forging of Carbon, Alloy, and Stainless Steels and Heat-Resistant Alloys
Forging of Carbon and Alloy Steels
Forging of Stainless Steel
Forging of Heat-Resistant Alloys
Forging of Refractory Metals
Forging of Nonferrous Metals
Forging of Aluminum Alloys
Forging of Copper and Copper Alloys
Forging of Magnesium Alloys
Forging of Nickel-Base Alloys
Forging of Titanium Alloys
Cold Heading and Cold Extrusion
Cold Heading
Cold Extrusion
Other Bulk Forming Processes
Conventional Hot Extrusion
Hydrostatic Extrusion
Wire, Rod, and Tube Drawing
Flat, Bar, and Shape Rolling
Evaluation of Workability
Introduction to Workability
Workability Tests
Workability Theory and Application in Bulk Forming Processes
Computer-Aided Process Design for Bulk Forming
Introduction to Process Design for Bulk Forming
Forging Process Design
Modeling Techniques Used in Forging Process Design
Acquisition of Data for Forging Process Design
Blanking and Piercing of Steel Sheet, Strip, and Plate
Blanking of Low-Carbon Steel
Piercing of Low-Carbon Steel
Fine-Edge Blanking and Piercing
Blanking and Piercing of Electrical Steel Sheet
Selection of Material for Blanking and Piercing Dies
Tooling and Lubrication for Forming of Sheet, Strip, and Plate
Presses and Auxiliary Equipment for Forming of Sheet Metal
Selection of Material for Press-Forming Dies
Selection of Material for Deep-Drawing Dies
Selection and Use of Lubricants in Forming of Sheet Metal
Forming Processes for Sheet, Strip, and Plate
Press Bending of Low-Carbon Steel
Press-Brake Forming
Press Forming of Low-Carbon Steel
Press Forming of High-Carbon Steel
Press Forming of Coated Steel
Forming of Steel Strip in Multiple-Slide Machines
Deep Drawing
Stretch Forming
Spinning
Rubber-Pad Forming
Three-Roll Forming
Contour Roll Forming
Explosive Forming
Electromagnetic Forming
Drop Hammer Forming
Forming of Bar, Tube, and Wire
Bending of Bars and Bar Sections
Bending and Forming of Tubing
Tube Spinning
Straightening of Bars, Shapes, and Long Parts
Straightening of Tubing
Forming of Wire
Shearing, Slitting, and Cutting
Shearing of Plate and Flat Sheet
Slitting and Shearing of Coiled Sheet and Strip
Shearing of Bars and Bar Sections
Thermal Cutting
Laser Cutting
Abrasive Waterjet Cutting
Forming of Stainless Steel and Heat-Resistant Alloy Sheet Materials
Forming of Stainless Steel
Forming of Heat-Resistant Alloys
Forming of Refractory Metals
Forming of Nonferrous Sheet Materials
Forming of Aluminum Alloys
Forming of Beryllium
Forming of Copper and Copper Alloys
Forming of Magnesium Alloys
Forming of Nickel-Base Alloys
Forming of Titanium and Titanium Alloys
Working of Platinum Group Metals
Superplastic Sheet Forming
Evaluation of Formability for Secondary(Sheet)Forming
Formability Testing of Sheet Metals
Process Design for Sheet Forming
CAD/CAM Applications in Sheet Forming
Process Modeling and Simulation for Sheet Forming
Statistical Analysis of Forming Processes
Supplementary Information
Glossary of Terms
Abbreviations and Symbols



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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 0871700212.01._SCLZZZZZZZ_

Asm Handbook Volume 15: Casting
By: D. M. Stefanescu ASM
ISBN: 0871700212
Publisher: ASM International - 1988-07
Hardcover | 9th Edition | 937 Pages
46,47Mo


Description

Gives you a thorough, yet easy-to-understand introduction to the principles of composition control, gas evolution in melts and inclusion-forming reactions, as well as the basic concepts of crystal growth and solidification that aids you with interpretation of structures. This volume discusses casting, molding and coremaking practices in a series of articles that describe the basic steps and equipment associated with each process, along with their advantages, limitations, and applications. Each article is preceded by a review of the manufacture, design and selection of patterns.

Table of Contents

Introduction and Historical Development
History of Casting
Development of Foundry Technology in the United States
Casting Advantages, Applications, and Market Size
Principles of Liquid Metal Processing
Introduction to Principles of Liquid Metal Processing
Principles of Physical Chemistry
Thermodynamic Properties of Aluminum-Base and Copper-Base Alloys
Thermodynamic Properties of Iron-Base Alloys
Composition Control
Gases in Metals
Inclusion-Forming Reactions
Principles of Solidification
Nucleation Kinetics
Basic Concepts in Crystal Growth and Solidification
Solidification of Single-Phase Alloys
Solidification of Eutectics
Solidification of Peritectics
Columnar to Equiaxed Transition
Microsegregation and Macrosegregation
Behavior of Insoluble Particles at the Solid/Liquid Interface
Low-Gravity Effects During Solidification
Solidification of Eutectic Alloys: Aluminum-Silicon Alloys
Solidification of Eutectic Alloys: Cast Iron
Interpretation and Use of Cooling Curves (Thermal Analysis)
Patterns
Patterns and Patternmaking
Molding and Casting Processes
Classification of Processes and Flow Chart of Foundry Operations
Aggregate Molding Materials
Bonds Formed in Molding Aggregates
Resin Binder Processes
Sand Molding
Coremaking
Plaster Molding
Ceramic Molding
Investment Casting
Replicast Process
Rammed Graphite Molds
Permanent Mold Casting
Die Casting
Centrifugal Casting
Continuous Casting
Counter-Gravity Low-Pressure Casting
Directional and Monocrystal Solidification
Squeeze Casting
Semisolid Metal Casting and Forging
Foundry Equipment and Processing
Sand Processing
Melting Furnaces: Electric Arc Furnaces
Melting Furnaces: Induction Furnaces
Melting Furnaces: Reverberatory Furnaces and Crucible Furnaces
Melting Furnaces: Cupolas
Vacuum Melting and Remelting Processes
Degassing Processes (Converter Metallurgy)
Degassing Processes (Ladle Metallurgy)
Nonferrous Molten Metal Processes
Automatic Pouring Systems
Shakeout and Core Knockout
Blast Cleaning of Castings
Welding of Cast Irons and Steels
Hot Isostatic Pressing of Castings
Testing and Inspection of Casting Defects
Coating of Castings
Foundry Automation
Design Considerations
Riser Design
Gating Design
Casting Design
Dimensional Tolerances and Allowances
Ferrous Casting Alloys
Classification of Ferrous Casting Alloys
Gray Iron
Ductile Iron
Compacted Graphite Irons
High-Alloy White Irons
Malleable Iron
High-Alloy Graphitic Irons
Plain Carbon Steels
Low-Alloy Steels
High-Alloy Steels
Cast Alnico Alloys
Nonferrous Casting Alloys
Aluminum and Aluminum Alloys
Copper and Copper Alloys
Zinc and Zinc Alloys
Magnesium and Magnesium Alloys
Cobalt-Base Alloys
Nickel and Nickel Alloys
Titanium and Titanium Alloys
Zirconium and Zirconium Alloys
Cast Metal-Matrix Composites
Computer Applications in Metal Casting
Introduction to Computer Applications in Metal Casting
Modeling of Solidification Heat Transfer
Modeling of Fluid Flow
Modeling of Combined Fluid Flow and Heat/Mass Transfer
Modeling of Microstructural Evolution
Supplementary Information
Glossary of Terms
Abbreviations and Symbols



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PLUS DE 130 LIVRES TECHNIQUES DE GENIE CIVIL ILLUSTRES - Page 2 Asmv16ac8

Metals Handbook Volume 16: Machining
By: American Society for Metals Joseph R. Davis Editor
ISBN: 0871700220
Publisher: ASM International - 1989-03
Hardcover | 9th Edition | 944 Pages


Table of Contents

Introduction to Machining Processes
Fundamentals of the Machining Process
Mechanics of Chip Formation
Forces, Power, and Stresses in Machining
Surface Finish and Surface Integrity
Tool Wear and Tool Life
Cutting Tool Materials
High-Speed Tool Steels
P/M High-Speed Tool Steels
Cast Cobalt Alloys
Cemented Carbides
Cermets
Ceramics
Ultrahard Tool Materials
Cutting Fluids
Metal Cutting and Grinding Fluids
Traditional Machining Processes
Turning
Boring
Trepanning
Planing
Shaping and Slotting
Broaching
Drilling
Reaming
Countersinking, Counterboring, and Spotfacing
Roller Burnishing
Tapping
Thread Milling
Thread Grinding
Thread Rolling
Die Threading
Milling
Gear Manufacture
Sawing
Multiple-Operation Machining
Proper Fixturing
Tool Condition Monitoring Systems
Grinding, Honing, and Lapping
Principles of Grinding
Grinding Equipment and Processes
Superabrasives
Honing
Lapping
Nontraditional Machining Processes
Introduction to Nontraditional Machining Processes
Abrasive Jet Machining
Abrasive Flow Machining
Waterjet/Abrasive Waterjet Machining
Ultrasonic Machining
Electrochemical Machining
Electrochemical Grinding
Electrochemical Discharge Grinding
Electrostream and Capillary Drilling
Shaped Tube Electrolytic Machining
Electrical Discharge Machining
Electrical Discharge Grinding
Electron Beam Machining
Laser Beam Machining
Thermal Energy Method
Chemical Milling
Photochemical Machining
High-Productivity Machining
High-Speed Machining
High Removal Rate Machining
Machine Controls and Computer Applications in Machining
Numerical Control
Adaptive Control
CAD/CAM Applications in Machining
Machining of Specific Metals and Alloys
Machinability Test Methods
Machining of Cast Irons
Machining of Carbon and Alloy Steels
Machining of Stainless Steels
Machining of Tool Steels
Machining of P/M Tool Steels
Machining of Heat-Resistant Alloys
Machining of Aluminum and Aluminum Alloys
Machining of Copper and Copper Alloys
Machining of Magnesium and Magnesium Alloys
Machining of Zinc Alloy Die Castings
Machining of Nickel and Nickel Alloys
Machining of Reactive Metals
Machining of Refractory Metals
Machining of Beryllium
Machining of Uranium and Uranium Alloys
Machining of Powder Metallurgy Materials
Machining of Metal-Matrix Composites and Honeycomb Structures



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