EFFECT OF TEXTURED CUTTING INSERTS IN MICRO-TURNING OF TI-6AL-4V ALLOYS

IF 0.6 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Samuel G.L., Rajesh Babu Tere
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Abstract

There is an increasing demand for higher machining quality and service life of the cutting tools used for the machining of high-strength alloys. Various studies revealed that textured cutting tools could improve the cutting performance by enhancing the tribological characteristics of the cutting regime. Advances in precision machining enabled the creation of micro/nano-textures on tool surfaces with excellent dimensional control. In this work, distinct micro designs, viz. horizontal line, vertical line and cross-hatch, are made, varying the pitch on the rake faces of coated carbide cutting inserts (CCMT060202LF KC5010). An in-house micro-turning machine was utilized to perform all the experiments in dry-cutting conditions. Micro-turning operations were performed using plain and textured inserts and varying the cutting parameters under dry conditions. The effectiveness of micro-scale textures at a contact interface was evaluated based on the cutting forces, tool flank wear and surface roughness. Compared to non-textured inserts, the machining using cross-hatch textured inserts with 100 µm pitch resulted in 50 % lower cutting forces, a 45 % improved surface finish and 37 % reduced tool flank wear. When machining with horizontal-line textured inserts with a 100 µm pitch, cutting forces are reduced by 46 %, the surface finish is enhanced by 34 % and the tool flank wear is lowered by 30 %. Similarly, when machining with vertical-line textured inserts with a 100 µm pitch, cutting forces are minimized by 38 %, the surface finish is improved by 20 % and the tool flank wear is lowered by 26 %. Additionally, a durability test was conducted for the inserts, and the results showed that the cross-hatch textured tool life improved by 80 %, the life of the horizontal-line textured tool increased by 50 % and the life of the vertical-line textured tool increased by 40 % compared to plain inserts. The heat dissipation and tool-chip friction during machining are thus significantly influenced by the texturing, namely by its design, dimensions and orientation.
织构切削齿对ti-6al-4v合金微车削加工的影响
对高强度合金加工用刀具的加工质量和使用寿命的要求越来越高。各种研究表明,织构刀具可以通过增强切削体系的摩擦学特性来改善切削性能。精密加工的进步使得在刀具表面上创建微/纳米纹理具有良好的尺寸控制。在这项工作中,在涂层硬质合金切削刀片(CCMT060202LF KC5010)的前表面上,不同的微设计,即水平线,垂直线和交叉口,被制造出来。在干切削条件下,利用内部微型车床进行所有实验。在干燥条件下,使用平面和纹理刀片进行微车削操作,并改变切削参数。基于切削力、刀面磨损和表面粗糙度评价了接触界面微尺度织构的有效性。与非纹理刀片相比,使用间距为100 μ m的交叉口纹理刀片的切削力降低了50%,表面光洁度提高了45%,刀具侧面磨损减少了37%。当使用间距为100 μ m的水平线纹理刀片进行加工时,切削力降低了46%,表面光洁度提高了34%,刀具侧面磨损降低了30%。同样,当使用100 μ m螺距的垂直线纹理刀片进行加工时,切削力降低了38%,表面光洁度提高了20%,刀具侧面磨损降低了26%。此外,对刀具进行了耐久性试验,结果表明,与普通刀具相比,十字口织构刀具寿命提高了80%,水平线织构刀具寿命提高了50%,垂直线织构刀具寿命提高了40%。因此,变形的设计、尺寸和方向对加工过程中的散热和刀屑摩擦有很大影响。
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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来源期刊
Materiali in tehnologije
Materiali in tehnologije 工程技术-材料科学:综合
CiteScore
1.30
自引率
0.00%
发文量
73
审稿时长
4-8 weeks
期刊介绍: The journal MATERIALI IN TEHNOLOGIJE/MATERIALS AND TECHNOLOGY is a scientific journal, devoted to original papers and review scientific papers concerned with the areas of fundamental and applied science and technology. Topics of particular interest include metallic materials, inorganic materials, polymers, vacuum technique and lately nanomaterials.
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