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Theoretical modelling and simulation of cutting forces in face milling with cutter runout

机译:带有刀具跳动的端面铣削中切削力的理论建模和仿真

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摘要

A new approach to theoretical modelling and simulation of cutting forces in face milling is presented. Based on a predictive machining theory, the action of a milling cutter is modeled as the simultaneous actions of a number of single-pointcutting tools. The milling forces are predicted from the workpiece material properties, cutter parameters, tooth geometry, cutting conditions and types of milling. The properties of the workpiece material are considered as functions of strain, strain-rate and temperature in the cutting region. It takes into account the effect of the intermittent contact between each milling tooth and the workpiece on the temperature in the cutting region. It also takes into account the effect of cutter runout on theundeformed chip thickness. Milling experiments have been conducted to verify the proposed model. Good agreements between the experimental and simulated results are presented.
机译:提出了一种用于面铣削切削力理论建模和仿真的新方法。基于预测性加工理论,铣刀的动作被建模为许多单点切割工具的同时动作。铣削力是根据工件的材料特性,刀具参数,齿的几何形状,切削条件和铣削类型来预测的。工件材料的特性被认为是切削区域中的应变,应变率和温度的函数。它考虑了每个铣齿和工件之间的间歇接触对切削区域温度的影响。它还考虑了刀具跳动对未变形切屑厚度的影响。进行了铣削实验以验证所提出的模型。实验结果和模拟结果之间达成了良好的协议。

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