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Reliability, Maintainability and Risk: Practical Methods for Engineers, Tenth Edition has taught reliability and safety engineers techniques to minimize process design, operation defects and failures for over 40 years. For beginners, the book provides tactics on how to avoid pitfalls in this complex and wide field. For experts in the field, well-described, realistic and illustrative examples and case studies add new insights and assistance. The author uses his more than 40 years of experience to create a comprehensive and detailed guide to the field, while also providing an excellent description of reliability and risk computation concepts.The book is organized into many parts, covering reliability parameters and costs, the history of reliability and safety technology, a cost-effective approach to quality, reliability and safety, how to interpret failure rates, a focus on the prediction of reliability and risk, a discussion of design and assurance techniques, and much more.
- Covers models for partial valve stroke test, fault tree logic and quantification difficulties
- Includes more detail on the use of tools such as FMEDA and programming standards like MISRA
- Presents case studies on the Datamet Project, Gas Detection System, Pressure Control System, and Helicopter Incidents and Risk Assessment
- Provides user exercises and answers
Dr. David J. Smith is the Proprietor of Technis Consultancy. He has written numerous books on Reliability and Safety over the last 40 years. His FARADIP database has become widely used, and his other software packages are also used throughout the profession. His PhD thesis was on the subject of reliability prediction and common cause failure. He contributed to the first drafting of IEC 61508 and chairs the IGEM panel which produces SR/15 (the gas industry safety related guidance). David is past President of the Safety and Reliability Society.
1. The History of Reliability and Safety Technology2. Understanding Terms and Jargon3. A Cost-Effective Approach to Quality, Reliability and Safety4. Realistic Failure Rates and Prediction Confidence5. Interpreting Data and Demonstrating Reliability6. Variable Failure Rates and Probability Plotting7. Basic Reliability Prediction Theory8. Methods of Modelling9. Quantifying the Reliability Models10. Risk Assessment (QRA)11. Design and Assurance Techniques12. Design Review, Test and Reliability Growth13. Field Data Collection and Feedback14. Factors Influencing Down Time15. Predicting and Demonstrating Repair Times16. Quantified Reliability Centred Maintenance 17. Systematic Failures, Especially Software18. Project Management and Competence19. Contract Clauses and Their Pitfalls20. Product Liability and Safety Legislation21. Major Incident Legislation22. Integrity of Safety Related Systems 23. A Case Study: The Datamet Project24. A Case Study: Gas Detection System25. A Case Study: Pressure Control System26. A Case Study: Helicopter Incidents and Risk Assessment