Fr. 189.00

Product Integrity and Reliability in Design

English · Paperback / Softback

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Description

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Product Integrity and Reliability in Design is intended to serve either as a text for graduate students or as a reference for practicing engineers. The book develops the root-cause approach to reliability - often referred to as "physics of failure" in the reliability engineering field. It approaches the subject from the point of view of a process and integrates the necessary methods to support that process. The book can be used to teach first- or second-year postgraduate students in mechanical, electrical, manufacturing and materials engineering about addressing issues of reliability during product development. It will also serve practicing engineers involved in the design and development of electrical and mechanical components and systems, as a reference.
The book takes an interdisciplinary approach appropriate to system engineering, stressing concepts that can be integrated into design and placing less emphasis on traditional assumptions about reliability and analysis as a separate development activity. Several case studies emphasize the understanding of failure mechanisms and failure prevention and show how reliability methods, including simulation and testing can be integrated into design and development.

List of contents

I: Concepts.- 1. Introduction to Product Integrity and Reliability Assessment.- 2. Elements of Probability for Reliability Assessment.- 3. Concepts in Reliability for Design Jillian.- II: Failure Mechanics.- 4. Overstress Failure and Load - Strength Interference.- 5. Elements of Fatigue and Related Mechanisms.- 6. Applications of Finite Element Analysis and Whole Field Stress Measurement.- 7. Elements of Corrosion.- 8. Failures in Electronic Assemblies and Devices.- 9. Case Studies in Product Failure and Failure Analysis.- III: Testing and Failure Analysis.- 10. Introduction to Testing and Test Effectiveness for Reliability Assessment.- 11. Design and Analysis of Statistical Experiments.- 12. Accelerated Testing and Data Analysis.- 13. Failure Analysis of Assemblies and Devices.- 14. Case Studies in Product Development and Improvement.- Appendices.

Summary

Product Integrity and Reliability in Design is intended to serve either as a text for graduate students or as a reference for practicing engineers. The book develops the root-cause approach to reliability - often referred to as "physics of failure" in the reliability engineering field. It approaches the subject from the point of view of a process and integrates the necessary methods to support that process. The book can be used to teach first- or second-year postgraduate students in mechanical, electrical, manufacturing and materials engineering about addressing issues of reliability during product development. It will also serve practicing engineers involved in the design and development of electrical and mechanical components and systems, as a reference.
The book takes an interdisciplinary approach appropriate to system engineering, stressing concepts that can be integrated into design and placing less emphasis on traditional assumptions about reliability and analysis as a separate development activity. Several case studies emphasize the understanding of failure mechanisms and failure prevention and show how reliability methods, including simulation and testing can be integrated into design and development.

Product details

Authors John W. Evans, Jillian Y. Evans
Assisted by Jillian Y. Evans (Editor), John W. Evans (Editor), Joh W Evans (Editor), John W Evans (Editor), Y Evans (Editor), Y Evans (Editor)
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 30.01.2013
 
EAN 9781447110651
ISBN 978-1-4471-1065-1
No. of pages 402
Dimensions 155 mm x 237 mm x 23 mm
Weight 640 g
Illustrations XIV, 402 p.
Subjects Humanities, art, music > Art > Interior design, design
Natural sciences, medicine, IT, technology > Technology > Electronics, electrical engineering, communications engineering

C, engineering, Engineering Design, Manufactures, Technical design, Electronics, Microelectronics, Electronics and Microelectronics, Instrumentation, Manufacturing, Machines, Tools, Processes, Production engineering, Machines, Tools, Processes

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