Reliability of High-Power Mechatronic Systems 1: Aerospace and Automotive Applications: Simulation, Modeling and Optimization
This first volume of a set dedicated to the reliability of high-power mechatronic systems focuses specifically on simulation, modeling and optimization in automotive and aerospace applications. In the search to improve industrial competitiveness, the development of methods and tools for the design of products is especially pertinent in the context of cost reduction. This book seeks to propose new methods that simultaneously allow for a quicker design of future mechatronic devices in the automotive and aerospace industries while guaranteeing their increased reliability. The reliability of these critical elements is further validated digitally through new multi-physical and probabilistic models that could ultimately lead to new design standards and reliable forecasting. - Presents a methodological guide that demonstrates the reliability of fractured mechatronic components and devices - Includes numerical and statistical models to optimize the reliability of the product architecture - Helps users develop a methodology to characterize critical elements at the earliest stage
1133480225
Reliability of High-Power Mechatronic Systems 1: Aerospace and Automotive Applications: Simulation, Modeling and Optimization
This first volume of a set dedicated to the reliability of high-power mechatronic systems focuses specifically on simulation, modeling and optimization in automotive and aerospace applications. In the search to improve industrial competitiveness, the development of methods and tools for the design of products is especially pertinent in the context of cost reduction. This book seeks to propose new methods that simultaneously allow for a quicker design of future mechatronic devices in the automotive and aerospace industries while guaranteeing their increased reliability. The reliability of these critical elements is further validated digitally through new multi-physical and probabilistic models that could ultimately lead to new design standards and reliable forecasting. - Presents a methodological guide that demonstrates the reliability of fractured mechatronic components and devices - Includes numerical and statistical models to optimize the reliability of the product architecture - Helps users develop a methodology to characterize critical elements at the earliest stage
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Reliability of High-Power Mechatronic Systems 1: Aerospace and Automotive Applications: Simulation, Modeling and Optimization

Reliability of High-Power Mechatronic Systems 1: Aerospace and Automotive Applications: Simulation, Modeling and Optimization

Reliability of High-Power Mechatronic Systems 1: Aerospace and Automotive Applications: Simulation, Modeling and Optimization

Reliability of High-Power Mechatronic Systems 1: Aerospace and Automotive Applications: Simulation, Modeling and Optimization

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Overview

This first volume of a set dedicated to the reliability of high-power mechatronic systems focuses specifically on simulation, modeling and optimization in automotive and aerospace applications. In the search to improve industrial competitiveness, the development of methods and tools for the design of products is especially pertinent in the context of cost reduction. This book seeks to propose new methods that simultaneously allow for a quicker design of future mechatronic devices in the automotive and aerospace industries while guaranteeing their increased reliability. The reliability of these critical elements is further validated digitally through new multi-physical and probabilistic models that could ultimately lead to new design standards and reliable forecasting. - Presents a methodological guide that demonstrates the reliability of fractured mechatronic components and devices - Includes numerical and statistical models to optimize the reliability of the product architecture - Helps users develop a methodology to characterize critical elements at the earliest stage

Product Details

ISBN-13: 9780081024225
Publisher: ISTE Press - Elsevier
Publication date: 09/27/2017
Sold by: Barnes & Noble
Format: eBook
Pages: 312
File size: 20 MB
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About the Author

Abdelkhalak El Hami is Professeur des universités at the Institut National des Sciences Appliquées (INSA-Rouen) in France and is in charge of the Normandy Conservatoire National des Arts et Metiers (CNAM) Chair of Mechanics and Head of the department of mechanical engineering of INSA Normandy, as well as several European pedagogical projects. He is an expert in fluid–structure interaction studies, reliability and optimization.
David Delaux is Reliability Director at Valeo and Reliability Senior Expert. Professor at Rouen University and ENSMA, he is also a national auditor/assessor at COFRAC (ISO 17025). He is the President of the European Reliability Environmental Confederation (CEEES).
Henri Grzeskowiak is a Technical Expert at Matra BAe Dynamics (missile) and MBDA (missile). He is also Auditor COFRAC, Head of Dept Environmental Engineering (Matra & MBDA) as well as former President of the Standardization Committee for Mechanical & Climatic Environment (DGA) and of the association ASTE (France) and CEEES (Europe).

Table of Contents

1. Reliability and Innovation: Issues and Challenges2. Reliability in the Automotive World3. Reliability in the World of Aeronautics4. Reliability in the World of Defense5. The Objectives of Reliability6. "Critical" Components7. Estimated Reliability Prediction8.Simulation of Degradation Phenomena in Semiconductor Components in order to Ensure the Reliability of Integrated Circuits9. Estimation of Fatigue Damage of a Control Board Subjected to Random Vibration10. Study on the Thermomechanical Fatigue of Electronic Power Modules for Traction Applications in Electric and Hybrid Vehicles (IGBT)11. Exploration of Thermal Simulation Aimed at Consolidating the Reliability Approach of Mechatronic Components

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Discusses methods, strategies and tools for product design that aid in cost reduction

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