This book provides a systematic and comprehensive interdisciplinary overview of ductile mode cutting of brittle materials, covering a range of topics from the fundamental physics to engineering practices. Discussing the machining mechanics and material properties, it explains the fundamental mechanism of ductile-to-brittle transition in the cutting of brittle materials. It also presents theoretical modeling and molecular dynamic simulation to demonstrate that ductile mode cutting can be achieved under certain conditions, as well as extensive experimental studies that produced smooth and damage-free surfaces on different materials, such as silicon, glass, tungsten carbide and calcium fluoride. Lastly, it explores how the ductile mode cutting performance and machinability of brittle materials can be further improved by hybrid machining processes like ultrasonic vibration and thermal-assisted cutting technologies in order to meet industry demands. 

 

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This book provides a systematic and comprehensive interdisciplinary overview of ductile mode cutting of brittle materials, covering a range of topics from the fundamental physics to engineering practices.

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Introduction.- Mechanisms of ductile mode cutting of brittle materials.- Ductile mode cutting characteristics.- Modeling of ductile mode cutting of brittle materials.- Molecular dynamic simulation of ductile mode cutting.- Ductile mode cutting of silicon.- Ductile mode cutting of glass.- Ductile mode cutting of tungsten carbide.- Ductile mode cutting of calcium fluoride.- Ultrasonic vibration assisted ductile mode cutting.- Thermally assisted ductile mode cutting.- Summary. 
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This book provides a systematic and comprehensive interdisciplinary overview of ductile mode cutting of brittle materials, covering a range of topics from the fundamental physics to engineering practices. Discussing the machining mechanics and material properties, it explains the fundamental mechanism of ductile-to-brittle transition in the cutting of brittle materials. It also presents theoretical modeling and molecular dynamic simulation to demonstrate that ductile mode cutting can be achieved under certain conditions, as well as extensive experimental studies that produced smooth and damage-free surfaces on different materials, such as silicon, glass, tungsten carbide and calcium fluoride. Lastly, it explores how the ductile mode cutting performance and machinability of brittle materials can be further improved by hybrid machining processes like ultrasonic vibration and thermal-assisted cutting technologies in order to meet industry demands.

  

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Provides insights into the fundamental mechanism in ductile mode cutting of brittle materials such as silicon, glass, tungsten carbide, and calcium fluoride Introduces advanced hybrid machining processes such as ultrasonic vibration and thermal- assisted machining to enhance machinability Presents comprehensive modeling and molecular dynamic simulation of the new ductile mode cutting manufacturing processes
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Produktdetaljer

ISBN
9789813298385
Publisert
2021-08-26
Utgiver
Springer Verlag, Singapore; Springer Verlag, Singapore
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet

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