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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Effect of conical micro-grooved texture on tool-chip friction property and cutting performance of WC-TiC/Co cemented carbide tools
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Effect of conical micro-grooved texture on tool-chip friction property and cutting performance of WC-TiC/Co cemented carbide tools

机译:锥形微沟仪纹理对WC-TIC / Co硬质合金工具的工具芯片摩擦性能和切割性能

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摘要

Purpose This study aimed to clarify the influence mechanism of conical micro-grooved texture on the tool-chip friction property and cutting performance of WC-TiC/Co cemented carbide tools under flood lubrication conditions. Design/methodology/approach Conical micro-grooved texture was fabricated on the tool rake face using laser texture technology. Metal cutting tests were conducted on AISI 1045 steel with conventional and developed tools for various cutting speeds (80 m/min to 160 m/min) and conical angles of micro-grooved texture (2 degrees to 5 degrees) under flood lubrication condition. The effect of conical micro-grooved texture on the tool cutting force, tool-chip friction coefficient, surface roughness of the machined workpiece, and wear of the tool rake face was determined. Findings Unlike the conventional tools, the conical micro-grooved tools successfully resulted in reductions in metal cutting force, tool-chip frictional coefficient, surface roughness of the machined workpiece, and wear of the tool rake face. These reductions were more noticeable than those of conventional tools with increases in the cutting speed and conical angle of the micro-grooved texture. Detailed research indicated that conical micro-grooved channel exhibits a directional motion characteristic of liquid, which accelerated the infiltration of cutting fluid at the tool-chip interface. Substantial cutting fluid was supplied and stored at the tool-chip interface for the conical micro-grooved tools. Therefore, the conical micro-grooved texture on the tool rake face showed evident advantages in improving tool-chip friction and tool cutting performance. Originality/value The main contribution of this study is proposing a new conical micro-grooved texture on the tool rake face, which improved tool-chip friction and tool cutting performance.
机译:目的本研究旨在阐明洪水润滑条件下透明锥形微沟区对锥形微沟织物对工具芯片摩擦性能的影响,切割碳化物工具的切削性能。使用激光纹理技术在工具耙面上制造了设计/方法/接近锥形微沟纹理。在AISI 1045钢上进行金属切削测试,具有常规和开发的工具,用于各种切割速度(80米/分钟至160米/分钟)和洪水润滑条件下的微沟纹理(2度至5度)的锥形角度。确定了锥形微沟纹理对工具切割力,工具芯片摩擦系数,加工工件的表面粗糙度以及工具耙面的磨损的影响。结果不同于传统工具,锥形微沟工具成功导致金属切削力,工具芯片摩擦系数,加工工件的表面粗糙度以及工具耙面的磨损。这些减少比传统工具的减少更加明显,随着微沟纹理的切割速度和锥形角度的增加。详细研究表明,锥形微沟道通道表现出液体的方向运动特性,其加速了工具芯片界面处的切削液的渗透。提供了大量切削液并储存在锥形微沟工具的工具芯片界面上。因此,工具耙面上的锥形微沟纹理在提高工具芯片摩擦和刀具切割性能方面表现出明显的优势。原创性/价值本研究的主要贡献是在刀具耙面上提出新的锥形微沟纹理,改善了工具芯片摩擦和刀具切割性能。

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