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Friction, Wear, and Erosion Atlas (Paperback): Kenneth G. Budinski Friction, Wear, and Erosion Atlas (Paperback)
Kenneth G. Budinski
R3,007 Discovery Miles 30 070 Ships in 12 - 17 working days

Friction, wear, and erosion are major issues in mechanical engineering and materials science, resulting in major costs to businesses operating in the automotive, biomedical, petroleum/oil/gas, and structural engineering industries. The good news is, by understanding what friction, wear, or erosion mode predominates in a mechanism or device, you can take action to prevent its costly failure. Seeing Is Believing Containing nearly 300 photos of component failures, macro- and micrographs of surface damage, and schematics on material removal mechanisms collected over 50 years of tribology consulting and research, Friction, Wear, and Erosion Atlas is a must-have quick reference for tribology professionals and laymen alike. Complete with detailed explanations of every friction, wear, and erosion process, the atlas' catalog of images is supported by a wealth of practical guidance on: Diagnosing the specific causes of part failure Identifying popular modes of wear, including rolling and impact, with a special emphasis on adhesion and abrasion Understanding manifestations of friction, such as force traces from a laboratory test rig for a variety of test couples Recognizing liquid droplet, solid particle, slurry, equal impingement, and cavitation modes of erosion Developing solutions to process-limiting problems Featuring a glossary of tribology terms and definitions, as well as hundreds of visual representations, Friction, Wear, and Erosion Atlas is both user friendly and useful. It not only raises awareness of the importance of tribology, but provides guidance for how designers can proactively mitigate tribology concerns.

Friction, Wear, and Erosion Atlas (Hardcover, New): Kenneth G. Budinski Friction, Wear, and Erosion Atlas (Hardcover, New)
Kenneth G. Budinski
R7,596 Discovery Miles 75 960 Ships in 12 - 17 working days

Friction, wear, and erosion are major issues in mechanical engineering and materials science, resulting in major costs to businesses operating in the automotive, biomedical, petroleum/oil/gas, and structural engineering industries. The good news is, by understanding what friction, wear, or erosion mode predominates in a mechanism or device, you can take action to prevent its costly failure. Seeing Is Believing Containing nearly 300 photos of component failures, macro- and micrographs of surface damage, and schematics on material removal mechanisms collected over 50 years of tribology consulting and research, Friction, Wear, and Erosion Atlas is a must-have quick reference for tribology professionals and laymen alike. Complete with detailed explanations of every friction, wear, and erosion process, the atlas' catalog of images is supported by a wealth of practical guidance on: Diagnosing the specific causes of part failure Identifying popular modes of wear, including rolling and impact, with a special emphasis on adhesion and abrasion Understanding manifestations of friction, such as force traces from a laboratory test rig for a variety of test couples Recognizing liquid droplet, solid particle, slurry, equal impingement, and cavitation modes of erosion Developing solutions to process-limiting problems Featuring a glossary of tribology terms and definitions, as well as hundreds of visual representations, Friction, Wear, and Erosion Atlas is both user friendly and useful. It not only raises awareness of the importance of tribology, but provides guidance for how designers can proactively mitigate tribology concerns.

Tribomaterials - Properties and Selection of Materials for Friction, Wear, and Erosion Applications (Hardcover): Kenneth G.... Tribomaterials - Properties and Selection of Materials for Friction, Wear, and Erosion Applications (Hardcover)
Kenneth G. Budinski, Steven T. Budinski
R5,827 Discovery Miles 58 270 Ships in 12 - 17 working days

This book is intended to help readers reduce the unwanted costs and ramifications of friction, wear, and erosion in tribosystems by recommending engineering materials that have proven to be successful in dealing with these issues. Recommendations on which tool materials work best, what are the most abrasion-resistant plastics, where should ceramics be used, and where do lubrication and coatings fit in are included. The purpose of the book is to offer engineering material suggestions that practicing material engineers have found to work in many applications based on more than 40 years of research and testing of tribomaterials. The first few chapters review the fundamentals of friction and how to deal with friction in design. The following chapters describe types of erosion and wear and the tests that are used to screen candidate material. All the important engineering materials (steels, cast irons, copper alloys, stainless steels, plastics/elastomer, and ceramics) receive a chapter describing their tribological characteristics and results of lab testing on candidates for applications. Surface engineering to alter contact surfaces is addressed. The book ends with a chapter on the use of lubricants to reduce friction and wear and a chapter on biotribology that summarizes important concepts and studies dealing with friction and wear in biological systems. The last chapter discusses the methodology of selecting materials for use in tribosystems. This book is purposely written in a conversational style making it accessible to anybody who has a friction, wear, erosion, or lubrication issue that needs to be addressed. There are questions at the end of each chapter for those who would like to teach an engineering course on tribomaterials. The book is also a source of another lab's (Bud Labs) test results for review by tribology researchers.

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