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Modeling the Influence of Tool Deflection on Cutting Force and Surface Generation in Micro-Milling

机译:模拟微铣削中刀具变形对切削力和表面生成的影响

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摘要

In micro-milling, cutting forces generate non-negligible tool deflection, which has a significant influence on the machining process and on workpiece accuracy. This paper investigates the tool deflection during micro-milling and its effect on cutting force and surface generation. The distribution of cutting forces acting on the tool is calculated with a mathematical model that considers tool elasticity and runout, and the tool deflection caused by the cutting forces is then obtained. Furthermore, an improved cutting force model and side wall surface generation model are established, including the tool deflection effect. Both cutting force and surface simulation models were verified by the micro-end-milling experiment, and the results show a very good agreement between the simulation and experiments.
机译:在微铣削中,切削力会产生不可忽略的刀具偏斜,这对加工过程和工件精度有重大影响。本文研究了微铣削过程中的刀具变形及其对切削力和表面生成的影响。利用考虑刀具弹性和跳动的数学模型计算作用在刀具上的切削力的分布,然后获得由切削力引起的刀具偏斜。此外,建立了一种改进的切削力模型和侧壁表面生成模型,包括刀具偏斜效果。通过微细铣削实验验证了切削力和表面模拟模型,结果表明模拟和实验之间有很好的一致性。

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