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Cutting performance of DLC coated tools in dry machining aluminum alloys

机译:DLC涂层刀具在干式加工铝合金中的切削性能

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The purpose of this study is to examine the impact of tribological properties of DLC coatings on cutting performance. In this work, DLC was prepared on a cemented carbide substrate by using a vacuum arc discharge with a graphite cathode. DLC was identified as a nonhydrogenated amorphous carbon film with the thickness of 0.1 mum. DLC coatings were evaluated in a pin-on-disk test as well as in aluminum alloy machining. DLC had a low friction coefficient (0.1) against aluminum alloy and an excellent anti-adhering property. The results showed that DLC coated tools can be used to reduce adhesion between a tool and a work material, and the formation of a built-up edge. In order to analyze the cutting process, a finite element method (FEM) simulation at the tool-chip interface was employed, to compare the experimental evidence. In particular, the comparison was carried out taking into account the chip shapes and cutting force. The FEM simulation of a chip formation process was in qualitative agreement with the experiments, and this enabled an explanation of the phenomenon of the cutting process. In the case of dry machining of the aluminum alloys, DLC coatings enhance the tool performance, the machined surface integrity and the tool life compared to an uncoated tool. (C) 2004 Elsevier B.V. All rights reserved.
机译:这项研究的目的是检查DLC涂层的摩擦学性能对切削性能的影响。在这项工作中,通过使用带有石墨阴极的真空电弧放电在硬质合金基体上制备了DLC。 DLC被鉴定为厚度为0.1μm的非氢化非晶碳膜。在针盘测试以及铝合金机加工中对DLC涂层进行了评估。 DLC对铝合金的摩擦系数(0.1)低,并且具有出色的抗粘附性能。结果表明,涂​​有DLC的工具可用于减少工具与工作材料之间的粘附力,并减少积屑瘤的形成。为了分析切削过程,在工具-芯片界面上采用了有限元方法(FEM)模拟,以比较实验证据。特别地,在考虑切屑形状和切削力的情况下进行比较。切屑形成过程的有限元模拟与实验定性一致,这可以解释切削过程的现象。在对铝合金进行干式加工的情况下,与未涂层的刀具相比,DLC涂层可提高刀具性能,加工的表面完整性和刀具寿命。 (C)2004 Elsevier B.V.保留所有权利。

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