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Vibration Assisted Machining : = Theory, Modelling and Applications /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Vibration Assisted Machining :/ Lu Zheng, Wanqun Chen, Dehong Huo.
Reminder of title:
Theory, Modelling and Applications /
Author:
Zheng, Lu,
other author:
Chen, Wanqun,
Description:
1 online resource (212 pages) :illustrations :
Subject:
Machining. -
Online resource:
https://www.asmedigitalcollection.asme.org/ebooks/book/267/Vibration-Assisted-Machining-Theory-Modelling-and
ISBN:
9781119506362 (e-ISBN)
Vibration Assisted Machining : = Theory, Modelling and Applications /
Zheng, Lu,
Vibration Assisted Machining :
Theory, Modelling and Applications /Lu Zheng, Wanqun Chen, Dehong Huo. - 1 online resource (212 pages) :illustrations
Includes bibliographical references and index.
Front Matter -- 1. Introduction to Vibration-Assisted Machining Technology -- 2. Review of Vibration Systems -- 3. Vibration System Design and Implementation -- 4. Kinematics Analysis of Vibration-Assisted Machining -- 5. Tool Wear and Burr Formation Analysis in Vibration-Assisted Machining -- 6. Modeling of Cutting Force in Vibration-Assisted Machining -- 7. Finite Element Modeling and Analysis of Vibration-Assisted Machining -- 8. Surface Topography Simulation Technology for Vibration-Assisted Machining -- Back Matter.
Restricted to subscribers or individual electronic text purchasers.
The first book to comprehensively address the theory, kinematic modelling, numerical simulation and applications of vibration assisted machining. Vibration Assisted Machining: Theory, Modelling and Applications covers all key aspects of vibration assisted machining, including cutting kinematics and dynamics, the effect of workpiece materials and wear of cutting tools. It also addresses practical applications for these techniques. Case studies provide detailed guidance on the design, modeling and testing of VAM systems. Experimental machining methods are also included, alongside considerations of state-of-the-art research developments on cutting force modeling and surface texture generation. Advances in computational modelling, surface metrology and manufacturing science over the past few decades have led to tremendous benefits for industry. Vibration Assisted Machining: Theory, Modelling and Applications provides engineering students, researchers, manufacturing engineers, production supervisors, tooling engineers, planning and application engineers and machine tool designers with the fundamentals of vibration assisted machining, along with methodologies for developing and implementing the technology to solve practical industry problems.
Electronic reproduction.
New York, N.Y. :
The American Society of Mechanical Engineers,
2021.
Mode of access: World Wide Web.
System requirements: Adobe Acrobat Reader.
In English.
ISBN: 9781119506362 (e-ISBN)
Standard No.: 10.1115/1.862VAMdoi
Publisher. No.: 1862VAMasme
ASME, Two Park Avenue. New York, NY 10016
LCCN: 2020027992Subjects--Topical Terms:
1407659
Machining.
Index Terms--Genre/Form:
554714
Electronic books.
LC Class. No.: TJ1185
Dewey Class. No.: 671.3/5
Vibration Assisted Machining : = Theory, Modelling and Applications /
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Front Matter -- 1. Introduction to Vibration-Assisted Machining Technology -- 2. Review of Vibration Systems -- 3. Vibration System Design and Implementation -- 4. Kinematics Analysis of Vibration-Assisted Machining -- 5. Tool Wear and Burr Formation Analysis in Vibration-Assisted Machining -- 6. Modeling of Cutting Force in Vibration-Assisted Machining -- 7. Finite Element Modeling and Analysis of Vibration-Assisted Machining -- 8. Surface Topography Simulation Technology for Vibration-Assisted Machining -- Back Matter.
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The first book to comprehensively address the theory, kinematic modelling, numerical simulation and applications of vibration assisted machining. Vibration Assisted Machining: Theory, Modelling and Applications covers all key aspects of vibration assisted machining, including cutting kinematics and dynamics, the effect of workpiece materials and wear of cutting tools. It also addresses practical applications for these techniques. Case studies provide detailed guidance on the design, modeling and testing of VAM systems. Experimental machining methods are also included, alongside considerations of state-of-the-art research developments on cutting force modeling and surface texture generation. Advances in computational modelling, surface metrology and manufacturing science over the past few decades have led to tremendous benefits for industry. Vibration Assisted Machining: Theory, Modelling and Applications provides engineering students, researchers, manufacturing engineers, production supervisors, tooling engineers, planning and application engineers and machine tool designers with the fundamentals of vibration assisted machining, along with methodologies for developing and implementing the technology to solve practical industry problems.
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