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Finite element modelling of the thermo-mechanical behavior of coatings under extreme contact loading in dry machining

机译:干加工中极端接触载荷下涂层热机械行为的有限元建模

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摘要

During metal cutting processes, intensive friction and high temperature generated at the tool chip interface affect the cutting zone of the tool, by inducing damage and wear. To improve the cutting tool's life, thin hard coatings, synthesized by physical or chemical vapor deposition (PVD or CVD) techniques, are often used as protective layers. In this work, numerical/theoretical analysis of dry machining has been performed to study the impact of different coating layers on the machining process. Four cases are considered: an uncoated tool made of tungsten carbide (WC-Co) and coated tungsten carbides in three different configurations. The first one is made of one layer namely TiN, the second one (hypothetical carbide insert) is composed of two layers (Al_2O_3 and TiN), and the last one has three layers (TiCN, Al_2O_3 and TiN). The workpiece material is an AISI 316L stainless steel. All cutting conditions are fixed in order to highlight the effect of coatings independently from others influencing parameters. The analysis has shown the impact of the different configurations of coatings on the temperature level inside the tool and on its surface, on the pressure and also on the cutting and feed forces.
机译:在金属切削过程中,在刀具切屑界面处产生的强烈摩擦和高温会引起损坏和磨损,从而影响刀具的切削区域。为了延长切削工具的使用寿命,通常将通过物理或化学气相沉积(PVD或CVD)技术合成的薄硬涂层用作保护层。在这项工作中,已经进行了干式加工的数值/理论分析,以研究不同涂层对加工过程的影响。考虑了四种情况:一种由碳化钨(WC-Co)制成的无涂层工具和三种不同配置的涂层碳化钨。第一层由一层即TiN制成,第二层(假设的碳化物刀片)由两层(Al_2O_3和TiN)组成,最后一层具有三层(TiCN,Al_2O_3和TiN)。工件材料是AISI 316L不锈钢。固定所有切削条件,以独立于其他影响参数的方式突出涂层的效果。分析表明,涂层的不同配置对工具内部及其表面的温度水平,压力以及切削力和进给力的影响。

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