Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/104457
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Title: Cutting force modelling of ultra-precision flycutting of groove
Authors: Zhang, G
To, S 
Issue Date: 2018
Source: Proceedings of SPIE : the International Society for Optical Engineering, 2018, v. 10838, 1083819
Abstract: Cutting force is a key factor of the cutting plans design, cutting conditions setting, tool wear evaluation and even machined surface topography prediction. However, little research has been conducted on the analysis of cutting force in ultra-precision fly cutting (UPFC). This paper presents a theoretical and experimental study on the cutting force modelling in UPFC of groove. In the present study, an analytic cutting force model has been established to predict the cutting force amplitudes both in the feed direction and thrust direction. Experiments were conducted to verify the simulation results. Theoretical and experimental results show that cutting force in UPFC is figured as a force pulse followed by a series of free vibration signals, cutting parameters such as cutting depth, feed rate seriously affect cutting force amplitude.
Keywords: Cutting force
Groove
Modelling
Ultra-precision fly cutting
Publisher: SPIE-International Society for Optical Engineering
Journal: Proceedings of SPIE : the International Society for Optical Engineering 
ISSN: 0277-786X
EISSN: 1996-756X
DOI: 10.1117/12.2505813
Description: 9th International Symposium on Advanced Optical Manufacturing and Testing Technologies: Advanced Optical Manufacturing Technologies, 26-29 June 2018, Chengdu, China
Rights: Copyright 2019 Society of Photo‑Optical Instrumentation Engineers (SPIE). One print or electronic copy may be made for personal use only. Systematic reproduction and distribution, duplication of any material in this publication for a fee or for commercial purposes, and modification of the contents of the publication are prohibited.
The following publication Guoqing Zhang and Suet To "Cutting force modelling of ultra-precision flycutting of groove", Proc. SPIE 10838, 9th International Symposium on Advanced Optical Manufacturing and Testing Technologies: Advanced Optical Manufacturing Technologies, 1083819 (16 January 2019) is available at https://doi.org/10.1117/12.2505813.
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