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Affordable Reliability Engineering: Life-Cycle Cost Analysis for Sustainability & Logistical Support

Autor William R. Wessels, Daniel Sillivant
en Limba Engleză Hardback – 16 apr 2015
 How Can Reliability Analysis Impact Your Company’s Bottom Line?
While reliability investigations can be expensive, they can also add value to a product that far exceeds its cost. Affordable Reliability Engineering: Life-Cycle Cost Analysis for Sustainability & Logistical Support shows readers how to achieve the best cost for design development testing and evaluation and compare options for minimizing costs while keeping reliability above specifications. The text is based on the premise that all system sustainment costs result from part failure. It examines part failure in the design and sustainment of fielded parts and outlines a design criticality analysis procedure that reflects system design and sustainment.
Achieve the Best Cost for Life-Cycle Sustainment
Providing a framework for managers and engineers to develop and implement a reliability program for their organizations, the authors present the practicing professional with the tools needed to manage a system at a high reliability at the best cost. They introduce analytical methods that provide the methodology for integrating part reliability, failure, maintainability, and logistic math models. In addition, they include examples on how to run reliability simulations, highlight tools that are commercially available for such analysis, and explain the process required to ensure a design will meet specifications and minimize costs in the process.
This text:
  • Demonstrates how to use information gathered from reliability investigations
  • Provides engineers and managers with an understanding of a reliability engineering program so that they can perform reliability analyses
  • Seeks to resolve uncertainty and establish the value of reliability engineering
Affordable Reliability Engineering: Life-Cycle Cost Analysis for Sustainability & Logistical Support focuses on reliability-centered maintenance and is an ideal resource for reliability engineers and managers. This text enables reliability professionals to determine the lowest life-cycle costs for part selection, design configuration options, and the implementation of maintenance practices, as well as spare parts strategies, and logistical resources.
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Specificații

ISBN-13: 9781482219647
ISBN-10: 1482219646
Pagini: 378
Ilustrații: 165 black & white illustrations, 154 black & white tables
Dimensiuni: 156 x 234 x 26 mm
Greutate: 0.7 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press

Public țintă

Professional Practice & Development

Cuprins

Scope of Reliability-Based Life-Cycle Economical Analysis. Reliability Analysis for Part Design. Reliability Analysis for System Sustainment. Engineering Economic Analysis. Reliability-Based Logistical Economic Analysis. Life-Cycle Economic Analysis. Reliability-Centered Maintenance. Reliability Database. Reliability Simulation and Analysis. A: Reliability Failure Math Models and Reliability Functions. B: Maintainability Math Models and Maintainability Functions. Logistics Downtime Functions. Engineering Economics Functions. References.

Notă biografică

Bill Wessels has over 45 years of experience in system design and sustainability. He currently works at the University of Alabama in Huntsville, where he cofounded the Reliability and Failure Analysis Laboratory and performs basic and applied research in design-for-reliability, reliability-based maintainability, and reliability-based life-cycle economic analysis. Wessels has a BS in engineering from the United States Military Academy at West Point, an MBA in decision sciences from the University of Alabama in Tuscaloosa, and a PhD in systems engineering from the University of Alabama in Huntsville. He is a registered professional mechanical engineer and a certified reliability engineer.
Daniel S. Sillivant is a researcher at the University of Alabama in Huntsville performing basic and applied research and investigations in reliability life-cycle modeling for aviation and sensors systems. He is published in peer-reviewed proceedings for the International Mechanical Engineering Congress and Exposition; Reliability, Availability, Maintainability Workshop; and Industry, Engineering, and Management Systems. Sillivant has a bachelor’s degree in chemical engineering and a master’s degree in industrial/reliability engineering from UAH. He has begun his dissertation research in reliability based life-cycle economic modeling for implementation of reliability-centered maintenance. In addition, he holds certificates in Lean Concepts Training and Six Sigma Green Belt.

Recenzii

"… an excellent reference book … written in an interesting and different way than traditional reliability books. The focus on economics of reliability will be welcome by both engineers and managers. … The book is based on many years’ experience of the authors and the coverage reflects the importance and priority and needs of industry. I will share more of these thoughts with my students in class."
—Min Xie, City University of Hong Kong
"… provides technical information and facts that will help improve the communication and understanding of important reliability life cycle concepts and principles among fellow technical and managerial professionals. … will attract the well-deserved attention of the expert and novice alike. The focus on life-cycle cost analysis brings to the engineering community something new and significant that helps to better underscore important role of reliability analysis in the in the total life cycle process."
—Dr. Russell A. Vacante, RMS Partnership Inc.

Descriere

This book applies reliability-centered maintenance, engineering economic analysis, and Monte Carlo simulation to enable engineering and management professionals to achieve optimum life-cycle affordability. It presents reliability-centered maintenance from the perspective of design and field sustainment. This text explains the process taken to ensure a design meets specifications and minimizes costs in the process. It gives engineers the knowledge to compare options for minimizing costs while keeping reliability above specifications.