Engineering Maintenance: A Modern Approach

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We may ship the books from Asian regions for inventory purpose. Book Description Condition: Brand New. Printing in English language. Condition: Very Good. Printed in English. Excellent Quality, Service and customer satisfaction guaranteed!. Home B. Available From More Booksellers. About the Book. We're sorry; this specific copy is no longer available. AbeBooks has millions of books. We've listed similar copies below. Embeds 0 No embeds. No notes for slide. Maintenability and reliability 1. Government works Printed in the United States of America on acid-free paper 10 9 8 7 6 5 4 3 2 1 International Standard Book Number Hardcover International Standard Book Number Hardcover Library of Congress Card Number This book contains information obtained from authentic and highly regarded sources.

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Balbir S. Includes bibliographical references and index. ISBN alk. Systems engineering--Management. D53 This book is affectionately dedicated to Professor Alexander S. Krausz for hiring me at the University of Ottawa and inspiring me to write journal articles and books. Within the framework of technology, we include research, development, and manufacturing, as well as maintainability, maintenance, and reliability.

Needless to say, maintainability, maintenance, and reliability of such systems and products have become more important than ever.

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  3. Engineering maintenance : a modern approach / B.S. Dhillon. - Version details - Trove.
  4. Global competition and other associated factors are forcing manufacturers to produce highly reliable and easily maintainable engineering products. This book is an attempt to satisfy the pressing need for a single volume that considers maintainability, maintenance, and reliability topics. The material covered is treated in such a manner that the reader needs no previous related knowledge to understand it.

    The Changing Face of Maintenance - Chemical Engineering | Page 1

    The sources of most of the material presented are given in the reference section at the end of each chapter. At appropriate places, the book contains examples along with their solutions, and at the end of each chapter are numerous problems for testing reader comprehension. The book is composed of 16 chapters. Chapter 2 reviews mathematical concepts considered useful to understand subsequent chapters. Chapter 3 presents various introductory aspects of reliability.

    The Changing Face of Maintenance

    Chapter 4 presents a number of reliability evaluation methods including fault tree analysis, the network reduction method, the delta—star method, the Markov method, and the supplementary variables method. Chapter 6 is devoted to mechanical and human reliability. Chapter 7 presents introductory aspects of maintainability, including the need for maintainability, maintainability versus reliability and maintenance, and main- tainability functions.

    Chapter 9 is devoted to maintainability management and costing. It covers topics such as maintainability management tasks during the product life cycle, maintainability program plans, maintainability organization functions, maintainability design reviews, life cycle costing, maintainability investment cost elements, and life cycle cost estimation models.

    Important aspects of human factors in maintainability are covered in Chapter Chapter 11 covers topics such as the need for maintenance, maintenance engineering objectives, maintenance measures, safety in maintenance, and quality in mainte- nance. Chapter 12 is devoted to corrective and preventive maintenance. It covers many useful aspects of both corrective and preventive maintenance. Chapter 14 is devoted to maintenance management and costing, and Chapter 15 presents important aspects of human error in engineering maintenance.

    Chapter 16 covers three important topics of engineering maintenance: software maintenance, robotic maintenance, and medical equipment maintenance.


    This book will be useful to many people including maintainability engineers; main- tenance engineers; reliability specialists; design engineers; system engineers; engineering managers; graduate and senior undergraduate students of engineering; instructors and researchers of maintainability, maintenance, and reliability; and engineers-at-large. I am deeply indebted to many people including students, friends, and colleagues for their input and encouragement at the moment of need.

    I thank my children Jasmine and Mark for their patience and intermittent disturbances that resulted in many desirable breaks. Last, but not least, I thank my other half, friend, and wife, Rosy, for her patience and for her help in proofreading. Author B. Dhillon is a professor of mechanical engineering at the University of Ottawa.

    Maintenance and types of maintenance

    His books are used in over 70 countries and many of them have been translated into languages such as German, Russian, and Chinese. He has served as general chairman of two international conferences on reliability and quality control held in Los Angeles and Paris in Professor Dhillon has served as a consultant to various organizations and has many years of experience in the industrial sector. At the University of Ottawa, he has taught engineering management, reliability, maintainability, safety, and related areas for over 25 years and he has also lectured in over 50 countries, including keynote addresses in North America, Europe, Asia, and Africa.

    In March , he was a distinguished speaker at the conference and workshop on surgical errors sponsored by the White House Health and Safety Committee and the Pentagon, held at the Capitol Hill. Professor Dhillon attended the University of Wales, where he earned a B. He was granted a Ph.

    Contents Chapter 1 Introduction For example, each year the U. Since the Industrial Revolution, maintenance of engineering systems has been a continuous challenge. The reliability of engineering systems has become an important issue during the design process because of the increasing dependence of our daily lives and schedules on the satisfactory functioning of these systems. Some examples of these systems are computers, aircraft, space satellites, nuclear power-generating reactors, automo- biles, and trains. In the modern context, the beginning of the maintainability discipline may be traced back to the period between World War II and the s, when various efforts directly or indirectly con- cerned with maintainability were initiated.

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    One example of these efforts is a part series of articles that appeared in Machine Design in and covered topics such as design of electronic equipment for maintainability, recommendations for designing maintenance access in electronic equipment, and designing for installation [4]. In the U. Many other military documents concerning maintainability appeared in the latter part of the s.

    In a book on maintenance of railways was published [11]. In the s the term preventive maintenance was coined, and in a handbook on maintenance engineering was published [12].