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Titlebook: Ductile Mode Cutting of Brittle Materials; Kui Liu,Hao Wang,Xinquan Zhang Book 2020 Springer Nature Singapore Pte Ltd. 2020 Silicon Ductil

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Molecular Dynamics Simulation of Ductile Mode Cutting comparable with experimental works. The multitude of potential functions is discussed with emphasis on those frequently used in modelling of brittle material. Several example theoretical models for nanometric machining of silicon and silicon carbide are presented, in view of these materials being r
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Ductile Mode Cutting of Siliconrinding or/and abrasive process, which always generate micro cracks and subsurface damage. In this chapter, theoretical analysis on ductile mode cutting of silicon wafer shows that machined silicon surface with free of fracture and nanometer scale surface roughness can be achieved when dislocation d
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Ductile Mode Cutting of Tungsten Carbidechining centre with CBN tools. The cutting forces are measured using a three-component dynamometer. Machined workpiece surface topography, chip formation, and tool wear are examined using an OMIS and SEM. Tool flank wear . is also measured using the OMIS. Surface roughness is measured using a stylus
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Ductile Mode Cutting of Calcium Fluoridecal properties. While micromachining techniques have evolved to enhance the production process for optical components, this chapter will focus on the fundamental aspects to achieve ductile mode machining by single point diamond turning and the essential surface characterisation techniques are also c
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Ultrasonic Vibration Assisted Ductile Mode Cuttingesses. For machining of brittle material, UVC has also been proven useful in improving surface integrity and increasing tool life by significantly increasing critical undeformed chip thickness for ductile-to-brittle transition. This chapter presents an analytical model to predict critical undeformed
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