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Kirjailija

W. Brian Rowe

Kirjat ja teokset yhdessä paikassa: 7 kirjaa, julkaisuja vuosilta 2012–2026, suosituimpiin kuuluu Handbook of Machining with Grinding Wheels. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

7 kirjaa

Kirjojen julkaisuvuodet: 2012–2026.

Principles of Modern Grinding Technology

Principles of Modern Grinding Technology

W. Brian Rowe; Xun Chen

ELSEVIER SCIENCE TECHNOLOGY
2026
nidottu
Structured as a comprehensive teaching aid, the third edition of Principles of Modern Grinding Technology caters to a wide range of professionals and students, including application engineers, manufacturing engineers, technicians, researchers, teachers, and students. It expertly guides the reader through every aspect of the grinding process, incorporating the latest advancements in high-speed grinding, cost reduction techniques, vibration troubleshooting, and productivity optimization. Moreover, it demonstrates how to simultaneously enhance grinding precision, improve result quality, and increase output. The third edition represents an expanded and revised version, encompassing cutting-edge developments such as ultra-precision grinding. It offers thorough analyses of the factors influencing grinding behavior and showcases practical applications through numerous worked examples. The book extensively references leading research to substantiate the advancements in the field. Advanced grinding exemplifies the core principles of manufacturing science. It initially introduces the fundamentals of material removal by grinding, followed by an in-depth examination of grinding tools and their preparation. This book delves into the intricacies of grinding mechanics, including thermal performance and quality-related concerns. Finally, it explores practical grinding applications while considering economic factors to highlight worthwhile investments and potential cost reductions. In this edition, several new chapters have been added to enhance the book's relevance and coverage. These include discussions on real contact in grinding, grinding energy, thermal damage, grinding machine developments, vibrations in grinding, and grinding process control.
Tribology and Fundamentals of Abrasive Machining Processes

Tribology and Fundamentals of Abrasive Machining Processes

Bahman Azarhoushang; Ioan D. Marinescu; W. Brian Rowe; Boris Dimitrov; Hitoshi Ohmori

William Andrew Publishing
2021
sidottu
This new edition draws upon the fundamentals of abrasive machining processes and the science of tribology to understand, predict, and improve abrasive machining processes. Each of the main elements of the abrasive machining system is looked at alongside the tribological factors that control the efficiency and quality of the processes described. The new edition has been updated to include a variety of industrial applications. Grinding and conditioning of grinding tools are dealt with in particular detail, and solutions are proposed for many of the most commonly experienced industrial problems, such as poor accuracy, poor surface quality, rapid tool wear, vibrations, workpiece burn, and high process costs. The entire book has been rewritten and restructured, with ten completely new chapters. Other new features include:
Handbook of Machining with Grinding Wheels

Handbook of Machining with Grinding Wheels

Ioan D. Marinescu; Mike P. Hitchiner; Eckart Uhlmann; W. Brian Rowe; Ichiro Inasaki

CRC Press
2019
nidottu
Grinding is a crucial technology that employs specific abrasive processes for the fabrication of advanced products and surfaces. Handbook of Machining with Grinding Wheels, Second Edition highlights important industry developments that can lead to improved part quality, higher productivity, and lower costs. Divided into two parts, the book begins with an explanation of grinding behavior and ends with a focus on new and emerging industrial applications. While the first edition focused on the basics of abrasive machining technology and presented a unified approach to machining with grinding wheels, the second edition ties in the continued need for traditional processes in conjunction with the latest applications. This book highlights new research topics that include: nanotechnology, alternative energy, and additive manufacturing, compares related approaches, and provides numerous references throughout the book. New in the Second Edition: Contains the latest information on abrasives, bonds, and dressingUpdates classic stability lobes for grindingIntroduces a new method for tracking dynamic instability in centerless grindingProvides a section in the chapter on ultrasonic-assisted grinding, which contains recent work on modelling of the processAdds material on fluid cooling Presents experimental results for in-process feedback to the grinding process Includes new examples on grinding machine technology (particularly for dressing) A single source reference covering every aspect of the grinding process, Handbook of Machining with Grinding Wheels functions as a definitive guide to grinding technology for both practicing engineers and students studying graduate-level courses (such as abrasive machining; grinding R&D; metal removal processes; machining of brittle materials; and principles of
Handbook of Machining with Grinding Wheels

Handbook of Machining with Grinding Wheels

Ioan D. Marinescu; Mike P. Hitchiner; Eckart Uhlmann; W. Brian Rowe; Ichiro Inasaki

Apple Academic Press Inc.
2016
sidottu
Grinding is a crucial technology that employs specific abrasive processes for the fabrication of advanced products and surfaces. Handbook of Machining with Grinding Wheels, Second Edition highlights important industry developments that can lead to improved part quality, higher productivity, and lower costs. Divided into two parts, the book begins with an explanation of grinding behavior and ends with a focus on new and emerging industrial applications. While the first edition focused on the basics of abrasive machining technology and presented a unified approach to machining with grinding wheels, the second edition ties in the continued need for traditional processes in conjunction with the latest applications. This book highlights new research topics that include: nanotechnology, alternative energy, and additive manufacturing, compares related approaches, and provides numerous references throughout the book. New in the Second Edition: Contains the latest information on abrasives, bonds, and dressingUpdates classic stability lobes for grindingIntroduces a new method for tracking dynamic instability in centerless grindingProvides a section in the chapter on ultrasonic-assisted grinding, which contains recent work on modelling of the processAdds material on fluid cooling Presents experimental results for in-process feedback to the grinding process Includes new examples on grinding machine technology (particularly for dressing)A single source reference covering every aspect of the grinding process, Handbook of Machining with Grinding Wheels functions as a definitive guide to grinding technology for both practicing engineers and students studying graduate-level courses (such as abrasive machining; grinding R&D; metal removal processes; machining of brittle materials; and principles of cutting).
Principles of Modern Grinding Technology

Principles of Modern Grinding Technology

W. Brian Rowe

William Andrew Publishing
2013
sidottu
Principles of Modern Grinding Technology, Second Edition, provides insights into modern grinding technology based on the author’s 40 years of research and experience in the field. It provides a concise treatment of the principles involved and shows how grinding precision and quality of results can be improved and costs reduced. Every aspect of the grinding process--techniques, machines and machine design, process control, and productivity optimization aspects--come under the searchlight. The new edition is an extensive revision and expansion of the first edition covering all the latest developments, including center-less grinding and ultra-precision grinding. Analyses of factors that influence grinding behavior are provided and applications are presented assisted by numerical examples for illustration. The new edition of this well-proven reference is an indispensible source for technicians, engineers, researchers, teachers, and students who are involved with grinding processes.
Tribology of Abrasive Machining Processes

Tribology of Abrasive Machining Processes

Ioan D. Marinescu; W. Brian Rowe; Boris Dimitrov; Hitoshi Ohmori

William Andrew Publishing
2012
sidottu
This book draws upon the science of tribology to understand, predict and improve abrasive machining processes. Pulling together information on how abrasives work, the authors, who are renowned experts in abrasive technology, demonstrate how tribology can be applied as a tool to improve abrasive machining processes. Each of the main elements of the abrasive machining system are looked at, and the tribological factors that control the efficiency and quality of the processes are described. Since grinding is by far the most commonly employed abrasive machining process, it is dealt with in particular detail. Solutions are posed to many of the most commonly experienced industrial problems, such as poor accuracy, poor surface quality, rapid wheel wear, vibrations, work-piece burn and high process costs. This practical approach makes this book an essential tool for practicing engineers.
Hydrostatic, Aerostatic and Hybrid Bearing Design

Hydrostatic, Aerostatic and Hybrid Bearing Design

W. Brian Rowe

Butterworth-Heinemann Inc
2012
sidottu
Solve your bearing design problems with step-by-step procedures and hard-won performance data from a leading expert and consultant Compiled for ease of use in practical design scenarios, Hydrostatic, Aerostatic and Hybrid Bearing Design provides the basic principles, design procedures and data you need to create the right bearing solution for your requirements. In this valuable reference and design companion, author and expert W. Brian Rowe shares the hard-won lessons and figures from a lifetime’s research and consultancy experience. Coverage includes: Clear explanation of background theory such as factors governing pressure, flow and forces, followed by worked examples that allow you to check your knowledge and understanding Easy-to-follow design procedures that provide step-by-step blueprints for solving your own design problems Information on a wide selection of bearing shapes, offering a range and depth of bearing coverage not found elsewhere Critical data on optimum performance from load and film stiffness data to pressure ratio considerations Operating safeguards you need to keep in mind to prevent hot-spots and cavitation effects, helping your bearing design to withstand the demands of its intended application Aimed at both experienced designers and those new to bearing design, Hydrostatic, Aerostatic and Hybrid Bearing Design provides engineers, tribologists and students with a one-stop source of inspiration, information and critical considerations for bearing design success.