Ductile Mode Cutting of Brittle Materials
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"Ductile Mode Cutting of Brittle Materials" by Kui Liu, Hao Wang, Xinquan Zhang is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.
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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"Ductile Mode Cutting of Brittle Materials" by Kui Liu, Hao Wang, Xinquan Zhang is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.
Topic: Dynamics
Author: Kui Liu, Hao Wang, Xinquan Zhang
Who this is for:
- Physics students
- Science-minded readers
- Readers building technical understanding
Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.
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.
| Author | Kui Liu, Hao Wang, Xinquan Zhang |
| Publisher | Springer |
| Published | 2021-08-26 |
| ISBN-13 | 9789813298385 |
| Binding | Paperback |
| Pages | 291 |
| Language | English |
| Subjects | Technology & Engineering |
| Topic | Dynamics |
| Series | Springer Advanced Manufacturing |
Format: Paperback
Length: 291 pages
Language: English
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