Reliability-based mechanical design, Volume 1, Component under static load
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The work Reliability-based mechanical design, Volume 1, Component under static load represents a distinct intellectual or artistic creation found in University of Liverpool. This resource is a combination of several types including: Work, Language Material, Books.
The Resource
Reliability-based mechanical design, Volume 1, Component under static load
Resource Information
The work Reliability-based mechanical design, Volume 1, Component under static load represents a distinct intellectual or artistic creation found in University of Liverpool. This resource is a combination of several types including: Work, Language Material, Books.
- Label
- Reliability-based mechanical design, Volume 1, Component under static load
- Title number
- Volume 1
- Title part
- Component under static load
- Statement of responsibility
- Xiaobin Le
- Language
- eng
- Summary
- A component will not be reliable unless it is designed with required reliability. Reliability-Based Mechanical Design uses the reliability to link all design parameters of a component together to form a limit state function for mechanical design. This design methodology uses the reliability to replace the factor of safety as a measure of the safe status of a component. The goal of this methodology is to design a mechanical component with required reliability and at the same time, quantitatively indicates the failure percentage of the component. Reliability-Based Mechanical Design consists of two separate books: Volume 1: Component under Static Load, and Volume 2: Component under Cyclic Load and Dimension Design with Required Reliability. This book is Reliability-Based Mechanical Design, Volume 1: Component under Static Load. It begins with a brief discussion on the engineering design process and the fundamental reliability mathematics. Then, the book presents several computational methods for calculating the reliability of a component under loads when its limit state function is established. Finally, the book presents how to establish the limit state functions of a component under static load and furthermore how to calculate the reliability of typical components under simple typical static load and combined static loads. Now, we do know the reliability of a component under static load and can quantitively specify the failure percentage of a component under static load. The book presents many examples for each topic and provides a wide selection of exercise problems at the end of each chapter. This book is written as a textbook for junior mechanical engineering students after they study the course of Mechanics of Materials. This book is also a good reference book for design engineers and presents design check methods in such sufficient detail that those methods are readily used in the design check of a component under static load
- Cataloging source
- CaBNVSL
- Dewey number
- 621.8/15
- Illustrations
- illustrations
- Index
- no index present
- LC call number
- TJ230
- LC item number
- .L473 2019eb vol. 1
- Literary form
- non fiction
- Nature of contents
-
- dictionaries
- bibliography
- Series statement
- Synthesis lectures on mechanical engineering,
- Series volume
- 20
- Target audience
- adult
Context
Context of Reliability-based mechanical design, Volume 1, Component under static loadWork of
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<div class="citation" vocab="http://schema.org/"><i class="fa fa-external-link-square fa-fw"></i> Data from <span resource="http://link.liverpool.ac.uk/resource/r-QyjNG_D7g/" typeof="CreativeWork http://bibfra.me/vocab/lite/Work"><span property="name http://bibfra.me/vocab/lite/label"><a href="http://link.liverpool.ac.uk/resource/r-QyjNG_D7g/">Reliability-based mechanical design, Volume 1, Component under static load</a></span> - <span property="potentialAction" typeOf="OrganizeAction"><span property="agent" typeof="LibrarySystem http://library.link/vocab/LibrarySystem" resource="http://link.liverpool.ac.uk/"><span property="name http://bibfra.me/vocab/lite/label"><a property="url" href="http://link.liverpool.ac.uk/">University of Liverpool</a></span></span></span></span></div>