Applied Reliability for Industry 3 1st Edition by David Delaux, Abdelkhalak El Hami, Henri Grzeskowiak – Ebook PDF Instant Download/Delivery: 178630693X ,9781786306937
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ISBN 10: 178630693X
ISBN 13: 9781786306937
Author: David Delaux, Abdelkhalak El Hami, Henri Grzeskowiak
Applied Reliability for Industry 3 illustrates the multidisciplinary state-of-the-art science of operational reliability. Many experts are now convinced that reliability is not limited to statistical sciences. In fact, many different disciplines interact in order to bring a product to its highest possible level of reliability, made available through today’s technologies, developments and production methods.
These three books, of which this is the third, propose new methods for analyzing the lifecycle of a system, enabling us to record the development phases according to development time and levels of complexity for its integration.
Operational reliability, as presented in Applied Reliability for Industry 3, verifies the reliability performance of the mechatronic system in real life through an analysis of field data.
Applied Reliability for Industry 3 1st Edition Table of contents:
1 Durability Approach: Applied to a Vehicle Lighting Control System
1.1. Introduction
1.2. Example of a vehicle lighting control system
1.3. Conclusion
1.4. References
2 Structural Diagrams to Validate the Reliability of Mechanical Components
2.1. Introduction
2.2. Choice of methods
2.3. Feasibility study on the four methods
2.4. Conclusion
2.5. References
3 How to Put an Efficient Methodology to Design Innovative Products in Place
3.1. Introduction
3.2. DFSS
3.3. DMAIC
3.4. Feedback
3.5. How to design a reliable welding process with control over the design of experience?
3.6. Definition of the objectives
3.7. Big Data and process?
3.8. Conclusion
3.9. Appendix 1: example of an ANOVA study
3.10. Appendix 2: studying the variability of cycle times
3.11. Appendix 3: example for the use of traditional statistics in Big Data
3.12. References
4 Reliability Study of the High Electron Mobility Transistor (HEMT)
4.1. Introduction
4.2. HEMT technology
4.3. HEMT thermal modeling
4.4. Reliability methods
4.5. Thermo-reliability coupling
4.6. Calculating HEMT reliability
4.7. Conclusion
4.8. References
5 Warranty Cost
5.1. Introduction
5.2. Warranty and reliability
5.3. Reliability estimation models
5.4. New models for estimating reliability from warranty costs
5.5. Applied automotive case studies
5.6. Conclusion
5.7. References
6 Reliability Evaluation of a Luxury Watch Product: Application of the Stress–Strength Method to a Mechanical Component
6.1. Introduction
6.2. Presentation of the watch and its case study
6.3. Evaluation of the customer usage profile
6.4. Characterizing experimental reliability
6.5. Reliability evaluation of customers
6.6. Conclusion
6.7. References
7 RBDO of the High Electron Mobility Transistor
7.1. Introduction
7.2. Description of the HEMT technology
7.3. Electrothermomechanical modeling of HEMT
7.4. Reliability methods
7.5. Reliability analysis of HEMT
7.6. Reliability optimization of systems
7.7. HEMT reliability optimization using the hybrid RBDO approach
7.8. Conclusion
7.9. References
List of Author
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Tags: David Delaux, Abdelkhalak El Hami, Henri Grzeskowiak, Applied Reliability, Industry