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Uncertainty management of cutting forces parameters and its effects on machining stability

机译:切削力参数的不确定性管理及其对加工稳定性的影响

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Virtual manufacturing is a field of research which numerically simulate all the manufacturing processes seen by a mechanical part during its production (for example casting, forging, machining, heat treatment,...). Its use is rising on various industries to reduce production costs and improve quality of manufactured parts. One of the most challenging component of the whole simulation chain is the simulation of machining operations due to some of its specificities (need of material law at high strain, strain rates and temperature, heterogeneities of machined material, influence of residual stresses,...). In order to circumvent these difficulties, macroscopic models of machining process have been developed in order to compute more global information (cutting forces, stability of the process, tolerance or roughness for example). For this approach, the cutting forces computation is done by using simple analytical law based on mechanistic approach. The parameters of the models have no clear physical meaning (or at least cannot be linked to intrinsic properties of the material to be machined) and are therefore considered constants for a given set of simulations. The aim of this paper is to take into account the uncertainty on the variability of the cutting force signal during machining operation used as input for mechanistic model identification. The variability of the response during a test on fixed conditions (cutting tool, machined material and cutting parameters) is taken into account to develop a model where parameters of the model can evolve during a given operation. The proposed model is then used as an input of a milling operation simulation in order to study its influence on machining stability as compared to a classical approach.
机译:虚拟制造是一个研究领域,其数值模拟全部由机械部件看到的制造工艺在其生产过程(例如铸造,锻造,机加工,热处理,...)。它的使用呈上升趋势各种行业降低生产成本,提高生产的部件的质量。一整个模拟链中最具挑战的部分是加工操作的模拟由于它的一些特殊性的(在高应变,应变率和温度,加工材料的非均质性,残余应力的影响需要实体法,... )。为了克服这些困难,加工过程的宏观模型已经被开发,以便计算更多的全球信息(切削力的过程中,容忍或粗糙例如稳定性)。对于这种方法,切削力计算是通过使用基于机械的方法简单的分析法来完成。该模型的参数不具有明确的物理意义(或至少不能被链接到的材料的固有性质被加工),因此被认为是一组给定的模拟常数。本文的目的是考虑到作为用于机械模型识别输入加工操作期间在切割力信号的可变性的不确定性。在固定条件(切削工具,机械加工的材料和切削参数)在测试过程中的响应的变异性是考虑到建立一个模型,其中模型的参数可以在给定操作过程中进化。然后该模型被用作铣削操作模拟的输入,以研究其对加工稳定性的影响相比于传统方法。

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