AWS SHB-2000 Soldering Handbook (Third Edition).pdf
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1、SOLDERING HANDBOOK 3rd Editioni Soldering Handbook 3rd Edition by Paul T. Vianco, Ph.D. Sandia National Laboratories, Albuquerque, New Mexico 550 N. W . LeJeune Road, Miami, Florida 33126 550 N. W . LeJeune Road, Miami, Florida 33126International Standard Book Number: 0-87171-618-6 Copyright 1999 by
2、 the American Welding Society 550 N.W. LeJeune Road, Miami, FL 33026 All rights reserved Printed in the United States of America Photocopy Rights Authorization to photocopy items for internal, personal, or educational classroom use only, or the internal, personal, or educational classroom use only o
3、f specific clients, is granted by the American Welding Society (AWS) provided that the appropriate fee is paid to the Copyright Clearance Center, 222 Rosewood Drive, Danvers, MA 01923, Tel: 978-750-8400; online: http:/ /iii Personnel A WS Committee on Brazing and Soldering D.W. Bucholz, Chair Confor
4、ma Clad, Incorporated J. R. Jachna, 1 stVice Chair Modine Mfg. Co. P . T. Vianco, 2 ndVice Chair Sandia National Laboratories C. B. Pollock, Secretary American Welding Society B. Barten Delphi Harrison Thermal Systems *R. E. Beal Amalgamated Technologies *S. S. Bhargava General Motors Corporation *A
5、. B. Cedilote Industrial Testing Laboratory Services N. C. Cole NCC Engineering, Incorporated *R. E. Cook Consultant R. G. Fairbanks Scarrott Metallurgical Company Y. Flom Goddard Space Flight Center C. E. Fuerstenau Lucas-Milhaupt Y. P. Gao Boeing-Rocketdyne P . K. Gupta Allied Signal Aerospace R.
6、L. Hall, Jr. Copper Development Association S. R. Hazelbaker Accurate Brazing Incorporated M. J. Higgins Praxair/Pyromet Group T. P . Hirthe Kru-Mar Mfg. Services Incorporated F . M. Hosking Sandia National Laboratories H. H. Lang York International Corporation *H. Lichtenberger Williams Advanced Ma
7、terials E. Liguori Scarrott Metallurgical M. J. Lucas, Jr. GE Aircraft Engineer *E. Lugscheider Aachen University of Technology *M. Manning General Electric Power Generation C. Moyer Praxair/Pyromet Group T. Oyama WESGO Incorporated C. A. Paponetti, Sr. HiTecMetal Group Incorporated R. L. Peaslee Wa
8、ll Colmonoy Corporation *D. D. Peter Daryl D. Peter and Associates A. Rabinkin Allied Signal, Incorporated *W. D. Rupert Engelhard Corporation M. L. Santella Oak Ridge National Laboratories J. L. Schuster Omni Technologies Corporation A. Severin Bradley Corporation J. R. Terrill Consultant *R. W. Wa
9、lls Princeton Engineering Group A WS Subcommittee on Soldering P . T. Vianco, Chair Sandia National Laboratories C. B. Pollock, Secretary American Welding Society *R. E. Beal Amalgamated Technologies C. E. Fuerstenau Alloy Ring Service P . K. Gupta Allied Signal Aerospace T. P . Hirthe Kru-Mar Mfg.
10、Services Incorporated F . M. Hosking Sandia National Laboratories R. W. Messler, Jr. Rensselaer Polytechnic Institute A. Rabinkin Allied Signal/Amorphous Metals *W. D. Rupert Engelhard Corporation *J. F . Smith Lead Industries Association *J. R. Terrill Consultant *Advisor iv Preface The perception
11、of soldering as a mature technology has been replaced over the past several years with an increased appreciation for the science and engineering principles that underlie the successful implementation of this joining tech- nique. Recent efforts to understand soldering technology have come about large
12、ly on the heels of the electronics revolu- tion, since soldering remains as the primary assembly technique for electronic component packaging and printed circuit board products. However, the narrow spotlight on electronics applications has expanded as technologists consider sol- dering processes for
13、 a wider range of structural applications. At present, several excellent textbooks are available on the topic of soldering. However, those references have tar- geted primarily electronics applications. It became apparent to the American Welding Society and, in particular, the AWS C3 Committee on Bra
14、zing and Soldering, that there is a growing need for a more generalized resource on soldering technology. It was also recognized that such a text should be written so as to be readily understood by individuals having a wide range of backgrounds; from the field assemblers and furnace operators to the
15、 engineering staff and technical man- agers. The opportunity to create such a text coincided with plans to revise the AWS Soldering Manual. The result of this effort is the Soldering Handbook. The Soldering Handbook is constructed with the following eight general topics: 1. Fundamentals of Soldering
16、 Technology; 2. Solder Materials; 3. Substrate Materials; 4. Fluxes; 5. Solder Pastes; 6. As- sembly Processes; 7. Inspection Techniques for Product Acceptance and Process Optimization; and 8. Environmental, Safety, and Health. Thorough discussions are provided in each of the major topical areas, in
17、cluding important principles on materials and processing as well as handy access to tabulated properties data. The text is formatted to serve as a refer- ence book; therefore, some information is duplicated in order to assure a clarity of discussion within each section. The handbook also provides a
18、substantial reference section at the end of the text which lists sources of information for those individuals wishing additional details on specific topics. It is the authors goal that the information provided in this handbook will allow soldering technology to be more fully utilized in advanced str
19、uctural joining applications, as well as to enhance its continued use as a critical assembly technol- ogy for the electronics industry. I wish to thank the volunteers of the AWS Technical Activities Committee and the AWS C3 Committee on Brazing and Soldering who reviewed the manuscript of this handb
20、ook. I also wish to thank Dr. Robert Messler, Jr. of Rensselaer Polytechnic Institute, for his critical and detailed examination of the manuscript and Howard Woodward of AWS for his efforts in editing of the handbook. Finally, I wish to thank Mr. Jerome Rejent and Ms. Alice Kilgo of Sandia National
21、Laboratories for their efforts in compiling the metallographic data used in the text. This work was supported in part by Sandia, a multiprogram laboratory operated by Sandia Corp., a Lockheed Martin Company, for the United States Dept. of Energy under Contract DE-AC04-94AL85000. This book is dedicat
22、ed to my wife Karen and daughters Maria and Sara. Paul T. Vianco, Ph.D. Chair, AWS C3B Subcommittee on Solderingv Table of Contents Page No. Personnel iii Preface.iv List of Tablesix List of Figures.xii 1. Fundamentals of Soldering Technology.1 1.1 Introduction3 1.2 Physical Metallurgy .3 1.2.1 Meta
23、ls and Alloys 3 1.2.1.1 Phase Diagrams .5 1.2.1.1.1 Binary Alloy Phase Diagrams5 1.2.1.1.2 Ternary Alloy Phase Diagrams 20 1.2.1.2 Structures and Properties .27 1.2.1.3 Solder Joint Formation and Microstructure.37 1.2.1.3.1 Wetting and Spreading of Molten Metals and Alloys (Equilibrium).37 1.2.1.3.2
24、 Wetting and Spreading of Molten Metals and Alloys (Kinetics).56 1.2.1.3.3 Solidification and Solder Joint Metallurgy 58 1.3 Solder Joint Design for Product Manufacturability and Service Reliability107 1.3.1 Product Manufacturability .107 1.3.2 Product Reliability .119 1.3.2.1 Static Loads .120 1.3.
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