Handbook of reliability engineering and management:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
New York u.a.
McGraw-Hill
1996
|
Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Getr. Zählung Ill., graph. Darst. |
ISBN: | 0070127506 |
Internformat
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Datensatz im Suchindex
_version_ | 1804125120747274240 |
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adam_text | CONTENTS Contributors xiii
Preface to the Second Edition xv
Chapter 1. Introduction, Definitions, and Relationships 1.1
1.1 Purpose of Section 1.1
1.2 Customer Satisfaction 1.1
1.3 Life Cycle of a Product 1.3
1.4 Reliability Program Plan 1.6
1.5 Some Special Reliability Considerations 1.9
Chapter 2. The Role of Management in Reliability 2.1
2.1 Change in Reliability from the 1960s to the 1990s 2.1
2.2 The Team Approach 2.2
2.3 Reliability Goals 2.2
Chapter 3. Managing Reliability as a Process 3.1
3.1 What is a Process? 3.1
3.2 How Is Reliability a Process? 3.2
3.3 Why Manage Reliability as a Process? 3.18
3.4 Managing the Reliability Process 3.19
Chapter 4. Economics of Reliability 4.1
4.1 Introduction 4.1
4.2 Reliability and Value 4.1
4.3 Reliability and Cost 4.6
4.4 Particular Issues 4.13
4.5 Review of Economic Tools 4.20
4.6 References and Suggested Reading 4.25
Chapter 5. Design for Reliability 5.1
5.1 Introduction 5.1
5.2 The DFR Process 5.2
5.3 Definition Phase 5.6
5.4 Design Phase 5.9
5.5 Release to Manufacturing Phase 5.77
v
vi CONTENTS
5.6 Other DFR Activities 5.72
5.7 Measuring Results 5.16
Chapter 6. Failure Mode and Effects Analysis (FMEA) and
Fault Tree Analysis (FTA) (Success Tree Analysis—STA) 6.1
6.1 Introduction 6.1
6.2 Definitions and Purposes 6.3
6.3 FMEA Types and Objectives and Benefits 6.4
6.4 Preparing to Develop the FMEA 6.6
6.5 Developing the FMEA 6.11
6.6 FTA 6.27
6.7 Fault Tree Symbols 6.26
6.8 Constructing a Fault Tree 6.29
6.9 Analysis Techniques 6.32
6.10 Other Aspects of FTA 6.43
6.11 Comparison Techniques 6.44
Chapter 7. Reliability Specifications and Goal Setting 7.1
7.1 Introduction 7.1
7.2 Company Level Goals 7.5
7.3 Goals for Families and Generations of Products 7.9
7.4 Reliability Goals for Individual Products 7.15
7.5 Indirect Goals for Reliability 7.26
7.6 Special Considerations 7.28
7.7 Conclusions 7.31
7.8 References and Suggested Reading 7.32
Chapter 8. Concurrent Engineering 8.1
8.1 Basic Applicability and Purpose 8.1
8.2 Fundamental Concepts of Concurrent Engineering 8.3
8.3 The First Principles of Concurrent Engineering 8.8
8.4 Implementing Concurrent Engineering 8.28
8.5 Resource Information for Concurrent Engineering Implementation 8.31
8.6 Reliability Engineering—A Key CE Player 8.31
8.7 Bibliography 8.32
Chapter 9. Human Centered Design 9.1
9.1 Introduction 9.1
9.2 Conceptual Foundations 9.4
9.3 Human Reliability 9.8
9.4 Ergonomics 9.16
9.5 Design for Usability 9.20
9.6 Related Special Topics 9.27
9.7 References and Suggested Reading 9.29
CONTENTS Vli
Chapter 10. Reliability Information Collection and Analysis 10.1
10.1 Information Needs to Be Met 10.3
10.2 Sources of Data 10.6
10.3 Data Storage and Retrieval Methods 70.70
10.4 Goals of Data Collection and Analysis 70.76
Chapter 11. Designing Experiments to Measure and Improve Reliability 11.1
11.1 Experimental Development of Competitive Advantage 71.2
11.2 Alternative Response Variables and Accelerated Testing 7 7.5
11.3 Experiment Design Strategies in Reliability 77.8
11.4 Two Level Factorial Designs and Analysis 11.12
11.5 Other Designs Useful in Reliability 7 7.16
11.6 Other Analysis Techniques 7 7.27
11.7 Warranty Data 11.23
11.8 Summary 11.23
11.9 References 11.24
Chapter 12. Accelerated Testing 12.1
12.1 Definition of the Accelerated Testing Process 12.1
12.2 Product Development Process 12.3
12.3 Evaluate Analyze Correct Verify Cycle 12.4
12.4 Developing the Road Map—Phase One 12.6
12.5 Performing the Evaluation—Phase Two 12.14
12.6 Formulate the Evaluation Regimen—Phase Three 12.16
12.7 Heat Transfer versus Air Speed in Chambers 12.20
12.8 Profile Tailoring Procedure 72.24
12.9 Case Histories 72.27
12.10 Bibliography 12.30
Chapter 13. Failure Analysis System—Root Cause and Corrective Action 13.1
13.1 Introduction 13.1
13.2 Establishing a Failure Analysis System 13.2
13.3 Root Cause Failure Analysis 13.9
13.4 Basic Root Causes 13.12
13.5 Autopsy Process 13.14
13.6 Destructive Physical Analysis 13.16
13.7 Corrective Action 13.17
13.8 Closing the Loop 13.18
13.9 Bibliography 13.18
Appendix: Example of a Failure Analysis Business Plan 13.19
Chapter 14. Physics of Failure 14.1
14.1 Introduction 74.7
viii CONTENTS
14.2 Device Physics and Reliability 14.2
14.3 Semiconductor Junctions 74.2
14.4 Parts Specifications 74.5
14.5 Failure Mechanisms 74.6
14.6 Practical Problems Encountered 74.27
14.7 Summary 74.27
14.8 References 74.22
Chapter 15. Maintainability and Reliability 15.1
15.1 Introduction 75.7
15.2 Maintainability Terms and Definitions 75.3
15.3 Maintainability Parameters 75.5
15.4 The Maintainability Program 75.9
15.5 Maintainability Allocation 75.74
15.6 Maintainability During the Design Effort 15.14
15.7 Testability 75.78
15.8 Maintainability Prediction 75.27
15.9 Maintainability Verification, Demonstration, and Evaluation 75.26
Chapter 16. Component Reliability 16.1
16.1 Introduction 76.7
16.2 Designing for Reliability 16.3
16.3 Manufacturing for Reliability 76.29
16.4 Component Function and Failure Summaries 16.34
16.5 Summary 76.59
Chapter 17. Thermal Management and Reliability of Electronics 17.1
17.1 Structure of Electronic Systems 77.7
17.2 Thermal Design Process 17.3
17.3 Heat Transfer Fundamentals 77.4
17.4 Natural Convection in Electronic Systems 77.77
17.5 Forced Convection in Electronic Systems 77.73
17.6 Fan Selection 77.73
17.7 Package Thermal Resistance 77.75
17.8 Heatsink for Electronic Systems 77.18
17.9 Experimental Measurements and Testing 77.79
17.10 CAD Tools for Thermal Modeling 77.23
17.11 Concluding Remarks 77.25
Chapter 18. Mechanical Stress and Analysis 18.1
18.1 Introduction 78.7
18.2 Mechanical Stress Analysis 78.3
CONTENTS IX
18.3 Standard Definitions, Nomenclature, and Fundamental Equations 78.5
18.4 Commonly Used Formulas 7ft8
18.5 Mechanical Failure Modes 78.77
18.6 Safety Factors and Margins of Safety 78.72
Chapter 19. Mechanical Reliability 19.1
19.1 Reliability Prediction (Present Techniques) 79.7
19.2 Basic Reliability Definition 79.2
19.3 Proposed Methods of Determining Mechanical System Reliability 79.2
19.4 Use of Existing Generic Failure Rate Data 19.3
19.5 Reliability Prediction (Using Product Multipliers) 79.9
19.6 Failure Rate Model for Seals 79.72
19.7 Reliability Prediction of Bearings 79.14
19.8 Reliability Prediction of Other Wearout Parts 79.78
19.9 Probabilistic Stress and Strength Analysis 79.79
19.10 Statistical Concepts and Principles 79.20
19.11 Taylor s Series for Determining Means and Variances of Random
Variables 79.24
Chapter 20. Design for Mechanical Reliability 20.1
20.1 Introduction 20.7
20.2 Reliability by Design: Review of Analysis 20.12
20.3 Material and Dimensioning Tolerances 20.76
20.4 Stress Concentration Factors 20.18
20.5 Fittings, Fastening, and Joints 20.23
20.6 Bolted and Riveted Joints 20.23
20.7 Welding and Welded Joints 20.30
20.8 Fracture Mechanics 20.34
20.9 Thermal Stresses 20.34
20.10 Design Standards 20.36
20.11 Component Design: Shafts and Springs 20.37
20.12 Vibration Analysis 20.42
20.13 Computer Aided Engineering 20.50
Chapter 21. System Reliability 21.1
21.1 Introduction 27.7
21.2 System Reliability Measure of Availability 21.3
21.3 System Reliability Measure of Frequency of Failure: MTBF 27.4
21.4 System Reliability Measure of Inherent Reliability 27.fi
21.5 Models for System Reliability 21.6
21.6 Parts Count Method 27.7
21.7 Block Diagram Method 27.8
21.8 Markov Analysis Method 27.70
21.9 Fault Tree Method 27.79
21.10 Petri Net Method 27.27
X CONTENTS
Chapter 22. Software Reliability and the Development Process 22.1
22.1 Introduction 22.7
22.2 Terminology 22.2
22.3 Software Reliability Examples 22.5
22.4 Comparing Hardware and Software Reliability 22.7
22.5 Software Reliability and the Development Process 22.8
22.6 Software Reliability Models 22.12
22.7 Conclusions 22.16
Chapter 23. Supplier Reliability and Quality Assurance 23.1
23.1 Introduction 23.1
23.2 Objectives for Supplier Quality and Reliability 23.2
23.3 Supplier Quality Systems 23.3
23.4 Basic Quality Systems 23.3
23.5 Statistically Based Improvement Systems 23.5
23.6 Boeing Advanced Quality System: Details of Process Flow 23.7
23.7 Customer Involvement in Supplier Quality and Reliability System 23.11
23.8 Assuring Reliability at the Supplier 23.12
Chapter 24. Techniques of Estimating Reliability at Design Stage 24.1
24.1 Introduction 24.1
24.2 Sources of Failure Data 24.2
24.3 Design Review 24.3
24.4 Probabilistic Approach to Design 24.9
24.5 Statistical Variation and Tolerance Analysis 24.12
24.6 Allocation of Reliability Requirements 24.16
Chapter 25. Mathematical and Statistical Methods and Models in
Reliability and Life Studies 25.1
25.1 Elements of Probability Theory 25.7
25.2 Distributions Used in Reliability 25.14
25.3 Elements of Statistical Theory 25.23
25.4 The Exponential Distribution 25.26
25.5 The Weibull Distribution 25.30
25.6 Success/Failure Testing 25.33
25.7 System Reliability Models 25.37
25.8 Bayesian Reliability in Design and Testing 25.39
25.9 Sequential Life Testing 25.42
25.10 Conclusion 25.47
Chapter 26. Life Distributions and Concepts 26.1
26.1 Introduction 26.1
26.2 Basic Concepts and the Exponential Distribution 26.1
CONTENTS xi
26.3 Normal Distribution 26.7
26.4 Lognormal Distribution 26.8
26.5 Weibull Distribution 26.9
26.6 Poisson Distribution 26.11
26.7 Binomial Distribution 26.14
26.8 The Series System Model for Products with Multiple Causes of Failure 26.16
Chapter 27. Graphical Analyses of Reliability Data 27.1
27.1 Introduction 27.1
27..2 Probability Plots for Life Data 27.1
27.3 Hazard Plotting of Multiply Censored Data 27.5
27.4 Graphical Analysis of Repair Data 27.10
Appendix A. Tables and Charts A.1
Appendix B. Charts B.1
Appendix C. Reliability Standards and Specifications C.1
Index I.I
|
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publisher | McGraw-Hill |
record_format | marc |
spelling | Handbook of reliability engineering and management [ed. by] W. Grant Ireson ... 2. ed. New York u.a. McGraw-Hill 1996 Getr. Zählung Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Fiabilité Teoria da confiabilidade larpcal Reliability (Engineering) Technische Anlage (DE-588)4059220-0 gnd rswk-swf Zuverlässigkeitstheorie (DE-588)4195525-0 gnd rswk-swf Zuverlässigkeit (DE-588)4059245-5 gnd rswk-swf Qualitätsmanagement (DE-588)4219057-5 gnd rswk-swf Produktgestaltung (DE-588)4047340-5 gnd rswk-swf Technik (DE-588)4059205-4 gnd rswk-swf Zuverlässigkeit (DE-588)4059245-5 s Technik (DE-588)4059205-4 s DE-604 Zuverlässigkeitstheorie (DE-588)4195525-0 s Produktgestaltung (DE-588)4047340-5 s 1\p DE-604 Qualitätsmanagement (DE-588)4219057-5 s 2\p DE-604 Technische Anlage (DE-588)4059220-0 s 3\p DE-604 Ireson, William Grant Sonstige oth HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007102846&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Handbook of reliability engineering and management Fiabilité Teoria da confiabilidade larpcal Reliability (Engineering) Technische Anlage (DE-588)4059220-0 gnd Zuverlässigkeitstheorie (DE-588)4195525-0 gnd Zuverlässigkeit (DE-588)4059245-5 gnd Qualitätsmanagement (DE-588)4219057-5 gnd Produktgestaltung (DE-588)4047340-5 gnd Technik (DE-588)4059205-4 gnd |
subject_GND | (DE-588)4059220-0 (DE-588)4195525-0 (DE-588)4059245-5 (DE-588)4219057-5 (DE-588)4047340-5 (DE-588)4059205-4 |
title | Handbook of reliability engineering and management |
title_auth | Handbook of reliability engineering and management |
title_exact_search | Handbook of reliability engineering and management |
title_full | Handbook of reliability engineering and management [ed. by] W. Grant Ireson ... |
title_fullStr | Handbook of reliability engineering and management [ed. by] W. Grant Ireson ... |
title_full_unstemmed | Handbook of reliability engineering and management [ed. by] W. Grant Ireson ... |
title_short | Handbook of reliability engineering and management |
title_sort | handbook of reliability engineering and management |
topic | Fiabilité Teoria da confiabilidade larpcal Reliability (Engineering) Technische Anlage (DE-588)4059220-0 gnd Zuverlässigkeitstheorie (DE-588)4195525-0 gnd Zuverlässigkeit (DE-588)4059245-5 gnd Qualitätsmanagement (DE-588)4219057-5 gnd Produktgestaltung (DE-588)4047340-5 gnd Technik (DE-588)4059205-4 gnd |
topic_facet | Fiabilité Teoria da confiabilidade Reliability (Engineering) Technische Anlage Zuverlässigkeitstheorie Zuverlässigkeit Qualitätsmanagement Produktgestaltung Technik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007102846&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT iresonwilliamgrant handbookofreliabilityengineeringandmanagement |