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Tribological Performance of Micro-Groove Tools of Improving Tool Wear Resistance in Turning AISI 304 Process

机译:微槽刀具在车削AISI 304工艺中提高刀具耐磨性的摩擦学性能

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摘要

AISI 304 has good physical and chemical properties and thus is widely used. However, due to the low thermal diffusivity, the cutting temperature of AISI 304 is high accelerating the wear of the tool. Therefore, tool wear is a major problem in machining hard cutting materials. In this study, we developed a new type of micro-groove tool whose rake surface was distributed with micro-groove by powder metallurgy based on the finite element temperature field morphology. We compared the wear of the proposed micro-groove tool with an untreated one by using a scanning electron microscope (SEM) and an X-ray energy spectrum. The abrasive, adhesive, and oxidation wear of the rake and the flank face of the micro-groove tool were lower than that of the untreated one. Due to the micro-groove on the rake face of the tool, the contact length between the tool and chip was reduced, leaving more extension space. Furthermore, chip extrusion deformation was avoided, and the energy caused by chip deformation was reduced. After 70 min of cutting, the counterpart reached the specified wear amount while the main cutting force, the feed resistance, and the cutting depth resistance of the proposed micro-groove tool were reduced by 16.1%, 33.9%, and 40.1%, respectively. With regard to steady state, the cutting temperature was reduced by 17.2% and the wear width of the flank face was reduced by 36.7%.
机译:AISI 304具有良好的物理和化学性质,因此被广泛使用。然而,由于低的热扩散率,AISI 304的切削温度很高,从而加速了工具的磨损。因此,工具磨损是加工硬切削材料时的主要问题。在这项研究中,我们基于有限元温度场的形态学,开发了一种新型的微沟槽刀具,其前刀面通过粉末冶金通过微沟槽分布。我们通过使用扫描电子显微镜(SEM)和X射线能谱,比较了所提出的微槽工具与未经处理的工具的磨损。细槽工具的前刀面和侧面的磨蚀,粘附和氧化磨损低于未处理的工具。由于刀具前刀面上的微凹槽,减少了刀具与切屑之间的接触长度,从而留出了更多的扩展空间。此外,避免了切屑挤压变形,并且减少了由切屑变形引起的能量。切削70分钟后,对应零件达到指定的磨损量,而所建议的微槽刀具的主切削力,进给阻力和切削深度阻力分别降低了16.1%,33.9%和40.1%。就稳态而言,切削温度降低了17.2%,后刀面的磨损宽度降低了36.7%。

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