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The revised edition of this book offers an expanded overview of the
reliability design of mechanical systems and describes the
reliability methodology, including a parametric accelerated life
test (ALT) plan, a load analysis, a tailored series of parametric
ALTs with action plans, and an evaluation of the final designs to
ensure the design requirements are satisfied. It covers both the
quantitative and qualitative approaches of the reliability design
forming in the development process of mechanical products, with a
focus on parametric ALT and illustrated via case studies. This new
reliability methodology - parametric ALT should help mechanical and
civil engineers to uncover design parameters improving product
design and avoiding recalls. Updated chapters cover product recalls
and assessment of their significance, modern definitions in
reliability engineering, parametric accelerated life testing in
mechanical systems, and extended case studies. For this revised
edition, one new chapter has been introduced to reflect recent
developments in analysis of fluid motion and mechanical vibration.
Other chapters are expanded and updated to improve the explanation
of topics including structures and load analysis, failure
mechanics, design and reliability testing, and mechanical system
failure. The broad scope gives the reader an overview of the
state-of-the-art in the reliability design of mechanical systems
and an indication of future directions and applications. It will
serve as a solid introduction to the field for advanced students,
and a valuable reference for those working in the development of
mechanical systems and related areas.
This book introduces and explains the parametric accelerated life
testing (ALT) methodology as a new reliability methodology based on
statistics, to help avoid recalls of products in the marketplace.
The book includes problems and case studies to help with reader
comprehension. It provides an introduction to reliability design of
the mechanical system as an alternative to Taguchi's experimental
methodology and enables engineers to correct faulty designs and
determine if the targeted product reliability is achieved.
Additionally, it presents a robust design methodology of mechanical
products to withstand a variety of loads. This book is intended for
engineers of many fields, including industrial engineers,
mechanical engineers, and systems engineers.
The revised edition of this book offers an expanded overview of the
reliability design of mechanical systems and describes the
reliability methodology, including a parametric accelerated life
test (ALT) plan, a load analysis, a tailored series of parametric
ALTs with action plans, and an evaluation of the final designs to
ensure the design requirements are satisfied. It covers both the
quantitative and qualitative approaches of the reliability design
forming in the development process of mechanical products, with a
focus on parametric ALT and illustrated via case studies. This new
reliability methodology - parametric ALT should help mechanical and
civil engineers to uncover design parameters improving product
design and avoiding recalls. Updated chapters cover product recalls
and assessment of their significance, modern definitions in
reliability engineering, parametric accelerated life testing in
mechanical systems, and extended case studies. For this revised
edition, one new chapter has been introduced to reflect recent
developments in analysis of fluid motion and mechanical vibration.
Other chapters are expanded and updated to improve the explanation
of topics including structures and load analysis, failure
mechanics, design and reliability testing, and mechanical system
failure. The broad scope gives the reader an overview of the
state-of-the-art in the reliability design of mechanical systems
and an indication of future directions and applications. It will
serve as a solid introduction to the field for advanced students,
and a valuable reference for those working in the development of
mechanical systems and related areas.
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