Tool Wear of WC-Co-Based Cemented Carbide in External Thread Turning of Super Heat-resistant Alloy Inconel 718 with High-Pressure Coolant Supply

T. Wada, S. Enoki
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引用次数: 1

Abstract

Super heat-resistant alloy Inconel 718, which is a component of gas turbines and aircraft engines, is difficult to cut. Many researches have been conducted on tool wear in high nickel alloy cutting. Conventionally, when cutting a work material with poor thermal conductivity, it is effective to decrease the cutting speed, prolong the tool life, and use a tool material with high thermal conductivity. High-pressure coolant cutting is effective for reducing the cutting temperature, and many studies on high-pressure coolant cutting have been conducted. In this study, super heat-resistant alloy Inconel 718 was screw thread turned with high-pressure coolant supply, and the tool wear was experimentally investigated. The cutting materials used was an un-coated ISO K10 cemented carbide. The "VNl," "VC" and "VNr" were measured, where the "VNl," "VC" and "VNr" were the maximum values of flank wear widths on the left side of the flank face, on the corner side of the flank face and on the right side of the flank face, respectively. The following results were obtained: (1) In the case of a cutting speed of 1.00 m/s, fracture of cutting part was observed in the conventional coolant supply. It was possible to suppress the tool wear with pressure coolant supply. (2) In the case of a cutting speed of 1.00 m/s, comparing the "VNr," "VC " and "VNl," "VC" was the smallest at any coolant pressure, and the "VC" decreased with the increase of the coolant pressure "P." Furthermore, the "VNr" and "VNl" decreased with the increase of the coolant pressure. (3) In the case of a cutting speed of 1.50 m/s, as compared among the "VNr," "VC" and "VNl," "VC" was the smallest at any coolant pressure, and the "VC" decreased with the increase of the coolant pressure.
高压冷却液下超耐热合金Inconel 718外螺纹车削中wc - co基硬质合金刀具磨损
超级耐热合金Inconel 718是燃气轮机和飞机发动机的组成部分,很难切割。高镍合金切削过程中刀具磨损的研究较多。通常,在切削导热性差的工作材料时,有效的方法是降低切削速度,延长刀具寿命,选用导热性高的刀具材料。高压冷却液切削对降低切削温度是有效的,人们对高压冷却液切削进行了大量的研究。采用高压冷却液对超耐热合金Inconel 718进行螺纹车削加工,并对其刀具磨损进行了实验研究。切削材料为未涂层的ISO K10硬质合金。测量“VNl”、“VC”和“VNr”,其中“VNl”、“VC”和“VNr”分别为翼面左侧、翼面角侧和翼面右侧的翼面磨损宽度最大值。结果表明:(1)当切削速度为1.00 m/s时,在常规冷却液供应下,切削部分出现断裂。使用压力冷却剂可以抑制刀具的磨损。(2)在切割速度为1.00 m/s时,比较“VNr”、“VC”和“VNl”,在任何冷却液压力下,“VC”最小,且“VC”随冷却液压力p的增加而减小。“VNr”和“VNl”随冷却液压力的增大而减小。(3)在切割速度为1.50 m/s时,在任何冷却液压力下,“VNr”、“VC”和“VNl”中,“VC”最小,且“VC”随冷却液压力的增加而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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