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首页> 外文期刊>International Journal of Materials, Mechanics and Manufacturing >Prediction of Cutting Force and Tool Deflection in Micro Flat End Milling
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Prediction of Cutting Force and Tool Deflection in Micro Flat End Milling

机译:微型平端铣削中切削力和刀具变形的预测

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This paper presents an investigation of prediction of cutting force and tool deflection in micro flat end milling. To predict cutting forces specific cutting force coefficients KT and KR were used. In fact, various cutting forces prediction models were proposed in past researches for conventional sized machining processes. However, micro end-milling processes were known as different phenomenon as respect to macro end-milling. Many past researches concerned complicated different models for micro end-milling from macro end-milling. However, cutting force models for both macro and micro end milling were fundamentally based on measured cutting forces for a series of experimental machining processes. Then, cutting force model proposed by Tlusty, which was developed for macro end-milling, was applied for micro flat end milling because this model is relatively simple. Finite element method was used to predict tool deflection based on predicted cutting forces. Predicted tool deflection amounts and actual machined profiles were compared each other in order to check out the differences between them.
机译:本文介绍了对微型平面立铣刀中切削力和刀具变形的预测研究。为了预测切削力,使用了特定的切削力系数KT和KR。实际上,在过去的研究中针对常规尺寸的加工过程提出了各种切削力预测模型。然而,相对于宏观端铣削,微型端铣削工艺被称为不同的现象。过去的许多研究都涉及到从宏观端铣削到复杂的微型端铣削模型。但是,宏观和微观端铣削的切削力模型基本上都是基于一系列实验加工过程中测得的切削力。然后,将由Tlusty提出的,用于宏观端铣削的切削力模型应用于微平面端铣削,因为该模型相对简单。基于预测的切削力,使用有限元方法来预测刀具变形。相互比较了预测的刀具偏斜量和实际的加工轮廓,以检查它们之间的差异。

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