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Brazing /

This second edition of a text on brazing includes revised material on tooling, design, materials, atmospheres, processing, and equipment. Several new topics are covered, including nanostructures and materials, microwave and laser brazing, more effective use of vacuum atmospheres, functionally gradie...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Schwartz, Mel M. (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Materials Park, OH : ASM International, 2003.
Edición:Second edition.
Temas:
Acceso en línea:Texto completo

MARC

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250 |a Second edition. 
264 1 |a Materials Park, OH :  |b ASM International,  |c 2003. 
264 4 |c Ã2003 
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520 8 |a This second edition of a text on brazing includes revised material on tooling, design, materials, atmospheres, processing, and equipment. Several new topics are covered, including nanostructures and materials, microwave and laser brazing, more effective use of vacuum atmospheres, functionally gradient materials, and intermetallics. There is also more coverage of beryllium alloys, aluminum-lithium alloys, new titanium alloys, ceramic-to-metal brazing, composites, and ceramic-to-ceramic brazing. Case histories and problem-solving examples are included. Annotation (c)2003 Book News, Inc., Portland, OR (booknews.com). 
504 |a Includes bibliographical references and index. 
505 0 0 |g 1.  |t Introduction to brazing --  |t Brazing versus soldering --  |t Historical development of brazing --  |t Advantages and limitations of brazing --  |t Mechanics of brazing --  |t Brazing versus other welding processes --  |g 2.  |t Brazing fundamentals --  |t Adhesion, wetting, spreading, and capillary attraction --  |t Practical experience, work-related tips, and problem-solving --  |g 3.  |t Elements of the brazing process --  |t Filler-metal flow --  |t Base-metal characteristics --  |t Filler-metal characteristics --  |t Surface preparation --  |t Joint design and clearance --  |t Temperature and time --  |t Torch brazing --  |t Furnace brazing --  |t Induction brazing --  |t Controlled-atmosphere brazing --  |t New induction brazing systems --  |t Resistance brazing --  |t Carbon resistance brazing --  |t Direct resistance brazing --  |t Dip brazing --  |t Infrared (quartz) brazing --  |t Exothermic brazing --  |t Laser brazing --  |t Braze welding --  |t Diffusion brazing --  |t Microwave brazing --  |t The Future of braze processing --  |t Practical experience, work-related tips, and problem-solving --  |g 4.  |t Base metals and base-metal family groups --  |t Metallurgical reactions --  |t Base-metal family groups --  |t Case histories and problem-solving examples --  |t Brazer filler metals --  |t Basic characteristics --  |t Filler-metal selection criteria --  |t Filler-metal types --  |t Specialized brazing filler metals and materials --  |t Filler-metal selection --  |t Filler-metal forms --  |t Case histories and problem-solving examples --  |g 6.  |t Fluxes and atmospheres --  |t Atmosphers --  |t Fluxes --  |t Case histories and problem-solving examples --  |g 7.  |t Fixturing, tooling, stopoffs, parting agents, surface preparation, surface cleaning, and repair --  |t Fixturing and tooling --  |t Stopoff materials and parting agents --  |t Surface cleaning and preparation --  |t Surface preparation for specific base metals --  |t Clean rooms --  |t Vacuum brazing cleaning --  |t Postbrazing treatments --  |t Repair techniques with cleaning agents --  |t Case histories and problem-solving examples --  |g 8.  |t Joint design --  |t Types of joints --  |t Joint clearance --  |t Design for assembly --  |t Effects of brazing variables on clearance --  |t Strength --  |t Joint design and ceramics --  |t Case histories and problem-solving examples --  |g 9.  |t Evaluation and quality control of brazed joints --  |t Design and quality system --  |t Quality standards for brazing and brazing processes --  |t Types of common defects --  |t Brazing process planning and control --  |t Nondestructive inspection --  |t Design testing, evaluation, and feedback --  |t Destructive inspection and testing methods --  |g 10.  |t Applications and future outlook --  |t Automation --  |t Fluxless brazing --  |t Novel and emerging brazing processes --  |t Future outlook --  |t Case histories and problem-solving examples. 
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