Selection and Use of Wear Tests for Ceramics

Selection and Use of Wear Tests for Ceramics

Author: C. S. Yust

Publisher: ASTM International

Published: 1988

Total Pages: 104

ISBN-13: 0803111827

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Symposium (see title) held May 1987, Cincinnati, OH. Papers on mechanical wear of ceramic materials and its measurement. Annotation copyright Book News, Inc. Portland, Or.


Mechanical Wear Fundamentals and Testing, Revised and Expanded

Mechanical Wear Fundamentals and Testing, Revised and Expanded

Author: Raymond J. Bayer

Publisher: CRC Press

Published: 2004-04-22

Total Pages: 424

ISBN-13: 9780203021798

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Written by a tribological expert with more than thirty years of experience in the field, Mechanical Wear Fundamentals and Testing, Second Edition compiles an extensive range of graphs, tables, micrographs, and drawings to illustrate wear, friction, and lubrication behavior in modern engineering applications. The author promotes a clear understandin


Engineered Materials Handbook, Desk Edition

Engineered Materials Handbook, Desk Edition

Author: ASM International. Handbook Committee

Publisher: ASM International

Published: 1995-11-01

Total Pages: 1313

ISBN-13: 0871702835

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A comprehensive reference on the properties, selection, processing, and applications of the most widely used nonmetallic engineering materials. Section 1, General Information and Data, contains information applicable both to polymers and to ceramics and glasses. It includes an illustrated glossary, a collection of engineering tables and data, and a guide to materials selection. Sections 2 through 7 focus on polymeric materials--plastics, elastomers, polymer-matrix composites, adhesives, and sealants--with the information largely updated and expanded from the first three volumes of the Engineered Materials Handbook. Ceramics and glasses are covered in Sections 8 through 12, also with updated and expanded information. Annotation copyright by Book News, Inc., Portland, OR


Engineering Design for Wear, Revised and Expanded

Engineering Design for Wear, Revised and Expanded

Author: Raymond G. Bayer

Publisher: CRC Press

Published: 2019-08-21

Total Pages: 444

ISBN-13: 9781420030969

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A modern presentation of approaches to wear design, this significantly revised and expanded second edition offers methods suited for meeting specific wear performance requirements, numerous design studies highlighting strategies for use with different tribological elements and mechanical systems, proven tactics for resolving wear-related problems,


Green Tribology, Green Surface Engineering, and Global Warming

Green Tribology, Green Surface Engineering, and Global Warming

Author: Ramnarayan Chattopadhyay

Publisher: ASM International

Published: 2014-01-01

Total Pages: 348

ISBN-13: 1627080643

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This book describes green engineering concepts to improve energy efficiency by reducing energy losses due to friction and wear in metalworking operations and by extending component life.


A Guide to Wear Problems and Testing for Industry

A Guide to Wear Problems and Testing for Industry

Author: Michael Neale

Publisher: William Andrew

Published: 2001-12-31

Total Pages: 171

ISBN-13: 0815515987

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Machine component wear is one of the costliest problems within industry. In fact, a 1997 survey in the UK placed wear costs at 25% of turnover, or approximately $1 billion. In many cases, making design and or material changes can reduce this cost by 50% or more! This handbook reviews component wear, and guides the reader through solutions to wear problems, testing methods for materials and wear mechanisms, and information on wear performance of different materials for components. The bottom line is that it helps to reduce ""the bottom line"" removing risks associated with changes to machinery.This book is based on practical use. It outlines the following practices: reviews of wear mechanisms that occur in various types of machinery and solutions to industrial wear problems; guides to relative wear performance of different component materials; comparison of the wear performance of those materials; reviews of laboratory tests to simulate wear, and selection of appropriate tests; identification of improved materials, and; examination of worn surfaces.