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基于新型最小未切削切屑厚度模型的非线性微铣削力预测

Prediction of Nonlinear Micro-Milling Force with a Novel Minimum Uncut Chip Thickness Model.

作者信息

Liu Tongshun, Zhang Kedong, Wang Gang, Wang Chengdong

机构信息

School of Mechanical and Electric Engineering, Soochow University, Suzhou 215021, China.

出版信息

Micromachines (Basel). 2021 Nov 30;12(12):1495. doi: 10.3390/mi12121495.

Abstract

The minimum uncut chip thickness (MUCT), dividing the cutting zone into the shear region and the ploughing region, has a strong nonlinear effect on the cutting force of micro-milling. Determining the MUCT value is fundamental in order to predict the micro-milling force. In this study, based on the assumption that the normal shear force and the normal ploughing force are equivalent at the MUCT point, a novel analytical MUCT model considering the comprehensive effect of shear stress, friction angle, ploughing coefficient and cutting-edge radius is constructed to determine the MUCT. Nonlinear piecewise cutting force coefficient functions with the novel MUCT as the break point are constructed to represent the distribution of the shear/ploughing force under the effect of the minimum uncut chip thickness. By integrating the cutting force coefficient function, the nonlinear micro-milling force is predicted. Theoretical analysis shows that the nonlinear cutting force coefficient function embedded with the novel MUCT is absolutely integrable, making the micro-milling force model more stable and accurate than the conventional models. Moreover, by considering different factors in the MUCT model, the proposed micro-milling force model is more flexible than the traditional models. Micro-milling experiments under different cutting conditions have verified the efficiency and improvement of the proposed micro-milling force model.

摘要

最小未切削切屑厚度(MUCT)将切削区域划分为剪切区域和犁削区域,对微铣削的切削力具有强烈的非线性影响。确定MUCT值对于预测微铣削力至关重要。在本研究中,基于在MUCT点处法向剪切力和法向犁削力相等的假设,构建了一个考虑剪切应力、摩擦角、犁削系数和刃口半径综合影响的新型解析MUCT模型来确定MUCT。构建了以新型MUCT为断点的非线性分段切削力系数函数,以表示在最小未切削切屑厚度影响下剪切/犁削力的分布。通过对切削力系数函数进行积分,预测了非线性微铣削力。理论分析表明,嵌入新型MUCT的非线性切削力系数函数是绝对可积的,使得微铣削力模型比传统模型更稳定、更准确。此外,通过在MUCT模型中考虑不同因素,所提出的微铣削力模型比传统模型更灵活。不同切削条件下的微铣削实验验证了所提出的微铣削力模型的有效性和改进效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27bb/8703881/3dc927d7eac6/micromachines-12-01495-g001.jpg

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