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A comparative study on cutting performance of rake-flank face structured cutting tool in orthogonal cutting of AISI/SAE 4140

机译:前刀面端面切削刀具在AISI / SAE 4140正交切削中切削性能的比较研究

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摘要

Surface structuring on cutting tools is a modern application of surface structuring that has shown improvements in tribological phenomena at tool-chip interface. Literature suggests that this technique has been used mainly to structure the rake face of a cutting tool. This study reports on the performance of femtosecond laser-generated structures on both rake and flank faces of the cutting tool. The premise for fabricating structures on both faces of cutting tool was to have strong impact on tool wear and cutting forces so as to reduce power demands. Fabricated structures were in a form of conventional micro-grooves. Performance of structures was assessed in the machining of AISI/SAE 4140 over a conventional range of cutting speeds for the selected workpiece material. The orthogonal cutting tests to investigate the effects of structured tool on cutting forces, friction coefficient and flank land wear rate were performed. Results show that the structured tool is effective in delivering better machining performance as compared to unstructured tool in terms of reduced friction coefficient by 14 %, cutting forces by 10 %, feed forces by 23 %, and compression ratio by 10 %. Characterisation of sticking and sliding contact was evaluated.
机译:切削工具的表面结构化是表面结构化的现代应用,已显示出工具-芯片界面处的摩擦学现象得到了改善。文献表明,该技术主要用于构造切削工具的前刀面。这项研究报告了飞秒激光产生的结构在切削工具前刀面和侧面上的性能。在切削工具的两个面上制造结构的前提是对切削工具的磨损和切削力产生强烈影响,以减少功率需求。制成的结构为常规的微槽形式。在AISI / SAE 4140的加工过程中,以选定工件材料的常规切削速度范围评估了结构的性能。进行正交切削试验,以研究结构化刀具对切削力,摩擦系数和侧面磨损率的影响。结果表明,与非结构化刀具相比,结构化刀具可有效地提供更好的加工性能,其摩擦系数降低14%,切削力降低10%,进给力降低23%,压缩比降低10%。评价了粘附和滑动接触的特性。

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