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Investigation and FEA-based simulation of tool wear geometry and metal oxide effect on cutting process variables

机译:刀具磨损几何形状和金属氧化物对切削工艺变量影响的研究和基于FEA的模拟

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摘要

In machining, it is clearly noticed that the cutting tool wear influences the cutting process. However, it is difficult with experimental methods to study the effects of tool wear on several machining variables. Thus, in the literature, some earlier studies are performed separately on the effect of tool flank wear and crater wear on cutting process variables (such as cutting forces and temperature). Furthermore when the workpiece material adheres in cutting tool, it affects considerably the heat transfer phenomena. Accordingly, in this work the finite element analysis (FEA) is performed to investigate the influence of combination of tool flank and crater wear on the local or global variables such as cutting forces, tool temperature, chip formation on the one hand and the effects of the oxidized adhesion layer considered as oxide (Fe_2O_3/Fe_3O_4/FeO) on the heat transfer in cutting insert on the other hand. In this investigation, an uncoated cutting insert WC-6Co and medium carbon steel grade AISI 1045 are used. The factorial experimental design technique with three parameters (cutting speed Vc, flank wear land VB, crater wear depth KT) is used for the first investigation without adhesion layer. Then, only linear investigation is performed. The analysis has shown the influence of the different configurations of the tool wear geometry on the local or global cutting process variables, mainly on temperature and cutting. The simulation's results show also, the highly influence of the oxidized adhesion layer (oxide Fe_2O_3/Fe_3O_4/FeO) on the heat transfer.
机译:在机加工中,很明显注意到切削刀具的磨损会影响切削过程。但是,用实验方法很难研究刀具磨损对几个加工变量的影响。因此,在文献中,一些较早的研究是分别针对刀具侧面磨损和月牙洼磨损对切削过程变量(例如切削力和温度)的影响而进行的。此外,当工件材料粘附在切削工具中时,它会显着影响传热现象。因此,在这项工作中,进行了有限元分析(FEA),以研究刀具侧面和坑洼磨损的组合对局部或整体变量(例如切削力,刀具温度,切屑形成以及一方面的影响)的影响。另一方面,在切削刀片中的热传递上,被认为是氧化物的氧化粘附层(Fe_2O_3 / Fe_3O_4 / FeO)。在这项研究中,使用了未涂层的切削刀片WC-6Co和中碳钢等级AISI 1045。具有三个参数(切削速度Vc,后刀面磨损面VB,月牙洼磨损深度KT)的析因实验设计技术用于没有粘附层的首次研究。然后,仅执行线性调查。分析表明,刀具磨损几何形状的不同配置对局部或全局切削过程变量(主要是温度和切削)的影响。模拟结果还表明,氧化粘附层(氧化物Fe_2O_3 / Fe_3O_4 / FeO)对传热有很大影响。

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