nc-AlTiN/Si3N4、TiAlN和TiN涂层刀片干式车削奥氏体不锈钢切削参数优化

K. V. Prasad, R. Pal, V. Rajendraprasad
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引用次数: 1

摘要

采用横向旋转阴极(LARC)技术在TNMG 160404硬质合金车刀上沉积了nc-AlTiN/Si3N4、TiAlN和TiN涂层。采用超细晶粒处理的硬质合金衬底作为TiAlN和TiN衬底。对涂层刀片进行了硬度测试,并通过x射线衍射研究确定了其成分。用扫描电镜观察了涂层的晶粒结构。在AISI 304不锈钢上进行了干切削试验,比较了这些涂层在磨损和工件表面光洁度方面的性能。采用三维共聚焦激光显微镜对翼面磨损进行测定。采用灰色关联分析对加工参数进行优化。研究表明,nc-AlTiN/Si3N4涂层的最高硬度为28 GPa。涂层还表现出致密的晶粒结构。此外,在切削试验中,即使在严重的干切削条件下,所观察到的磨损也小于其他两种涂层,并且该涂层赋予工作部件的表面光洁度小于2 μm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Cutting Parameters during Dry Turning of Austenitic Stainless Steel Using nc-AlTiN/Si3N4, TiAlN, and TiN Coated Inserts
The nc-AlTiN/Si3N4, TiAlN, and TiN coating were deposited using lateral rotating cathodes (LARC) technology on TNMG 160404 cemented carbide turning inserts. Ultrafine grain treated cemented carbide substrates were used in case of TiAlN and TiN inserts. The coated inserts were tested for their hardness and compositions were determined by X-ray diffraction studies. The grain structures of coatings were observed using scanning electron microscopy. Dry cutting tests were performed on AISI 304 stainless steel to compare the performances of these coatings in terms of wear and surface finish imparted to workpiece. 3D confocal laser microscope was used to determine the flank wear. Grey relation analysis was carried out to optimize the machining parameters. Studies reveal that nc-AlTiN/Si3N4 coating showed the highest hardness of 28 GPa. The coating also shows a dense grain structure. Furthermore, in cutting tests even under severe dry cutting conditions, the wear observed was less than the other two coatings and surface finish imparted to work parts was less than 2 μm by this coating.
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