Ti-6Al-4V车削涂层刀片可加工性研究

Ryan M. Khawarizmi, Yang Guo, T. Bieler, P. Kwon
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引用次数: 1

摘要

钛(Ti)合金由于导热系数低、模量低、化学反应活性高而被归类为难以加工的材料。在本文中,使用未涂层碳化物、两种商业多层涂层碳化物(Sandvik®MM1115和MM11125)以及其他几种先进的涂层碳化物工具(为本研究制造的AlTiN、TiAlN、ZrN、BAM和(AlCrSi/Ti)N涂层)来加工具有固溶处理和时效(STA)组织的Ti- 6al - 4v合金棒。虽然具有更高硬度和化学稳定性的涂层有望提供更好的刀具磨损保护,但涂层刀片尚未成功应用于钛合金的加工。在三种切削速度(61,91和122 m/min)下,使用测力仪测量切削力,并使用共聚焦激光扫描显微镜(CLSM)评估刀具对刀片的磨损程度,同时进行了一系列车削实验。在所测试的刀片中,涂层厚度为7 μm的(AlCrSi/Ti)N涂层刀片的性能最好,但仅在切削速度为61 m/min时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Machinability Study of Coated Inserts for Turning Ti-6Al-4V
Titanium (Ti) alloys are classified as difficult-to-machine materials due to low thermal conductivity, low modulus, and high chemical reactivity. In this paper, a Ti-6Al-4V alloy bar in a solution treated and aged (STA) microstructure is turned using uncoated carbide, two commercial multilayered coated carbides (Sandvik® MM1115 and MM11125), and several other advanced coated carbide tools with AlTiN, TiAlN, ZrN, BAM, and (AlCrSi/Ti)N coatings that were fabricated for this study. While coatings with increased hardness and chemical stability are expected to provide better protection against tool wear, coated inserts have not been successfully implemented in machining Ti alloys. A series of turning experiments was carried out while measuring the cutting forces using a dynamometer at three cutting speeds (61, 91, and 122 m/min), and the extent of tool wear on the inserts was assessed using Confocal Laser Scanning Microscopy (CLSM). Among the inserts tested, the (AlCrSi/Ti)N coated insert with a 7 μm coating thickness provided the best performance compared to other inserts, but only at the cutting speed of 61 m/min.
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