Design for reliability

"The aim of Design for Reliability (DFR) is to design for zero failures of critical system functions, which results in enormous savings in life cycle costs for producers and users. This practical guide helps readers to understand the best-of-breed methods, technologies, and tools for incorporat...

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Bibliographic Details
Group Author: Raheja, Dev. (Editor); Gullo, Louis J. (Editor)
Published:
Literature type: Electronic eBook
Language: English
Series: Wiley series in quality & reliability engineering
Subjects:
Online Access: http://onlinelibrary.wiley.com/book/10.1002/9781118310052
Summary: "The aim of Design for Reliability (DFR) is to design for zero failures of critical system functions, which results in enormous savings in life cycle costs for producers and users. This practical guide helps readers to understand the best-of-breed methods, technologies, and tools for incorporating reliability into the complex systems design process. A significant feature of the book is the integration of ideas from computer science and market engineering. By adopting these design principles and learning from "insight" panels, engineers and managers will improve their ability to compete in global markets"--
Carrier Form: 1 online resource (xxiii, 308 p.) : ill.
Bibliography: Includes bibliographical references and index.
ISBN: 9781118310052 (electronic bk.)
1118310055 (electronic bk.)
9781118309995 (electronic bk.)
1118309995 (electronic bk.)
9781118310038 (electronic bk.)
1118310039 (electronic bk.)
Index Number: TA169
CLC: TB114.3
Contents: Introduction: What You Will Learn --
Design for Reliability Paradigms /
Reliability Design Tools /
Developing Reliable Software /
Reliability Models /
Design Failure Modes, Effects, and Criticality Analysis /
Process Failure Modes, Effects, and Criticality Analysis /
FMECA Applied to Software Development /
Six Sigma Approach to Requirements Development /
Human Factors in Reliable Design /
Stress Analysis During Design to Eliminate Failures /
Highly Accelerated Life Testing /
Design for Extreme Environments /
Design for Trustworthiness /
Prognostics and Health Management Capabilities to Improve Reliability /
Reliability Management /
Risk Management, Exception Handling, and Change Management /
Integrating Design for Reliability with Design for Safety /
Organizational Reliability Capability Assessment /