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首页> 外文期刊>Journal of Materials Processing Technology >Investigating the influence of built-up edge on forces and surface roughness in micro scale orthogonal machining of titanium alloy Ti6Al4V
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Investigating the influence of built-up edge on forces and surface roughness in micro scale orthogonal machining of titanium alloy Ti6Al4V

机译:在钛合金Ti6Al4V的微尺度正交加工中研究堆积边缘对力和表面粗糙度的影响

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The edge geometry of cutting tools directly influences the chip formation mechanism in micro mechanical machining, where the edge radius and uncut chip thickness are in the same order of magnitude. An uncut chip thickness that is smaller than the cutting edge radius results in a large negative rake angle during machining, and built-up edge formation then affects the mechanics of the process. In this study, micro-scale orthogonal cutting tests on titanium alloy Ti6Al4V were conducted to investigate the influence of built-up edge formation on the machining forces and surface roughness. Cutting edges in these tests are engineered using wire EDM technique to have an edge radius of around 2 mu m and clearance angles of 7 degrees and 14 degrees. It is observed that machining process inputs (uncut chip thickness, cutting speed, and clearance angle) affect the size of the built-up edge, which in turn affect the process outputs. It is observed that built-up edge formation protects the cutting edge from flank and crater wear under micro machining conditions and the influence of built-up edge on the surface roughness varies depending on the cutting speed and uncut chip thickness. Our findings also indicate a close relationship between the minimum uncut chip thickness and the mean roughness depth (R-z) of the machined surface. The minimum uncut chip thickness is found to be around 10% of the edge radius in the presence of built-up edge. (C) 2016 Elsevier B.V. All rights reserved.
机译:切削刀具的边缘几何形状直接影响微机械加工中的切屑形成机制,其中边缘半径和未切削切屑厚度处于相同的数量级。小于切削刃半径的未切削切屑厚度会导致在加工过程中产生较大的负前角,然后堆积的刀刃形成会影响加工的机理。在这项研究中,对钛合金Ti6Al4V进行了微型正交切削试验,以研究积屑瘤形成对加工力和表面粗糙度的影响。在这些测试中,切削刃是使用线材电火花加工技术加工而成的,其刀刃半径约为2微米,间隙角分别为7度和14度。可以看出,加工过程的输入(未切屑的厚度,切割速度和间隙角)会影响积屑瘤的大小,进而会影响过程的输出。可以看出,在微加工条件下,堆积边缘的形成可保护切削刃免受侧面和坑洼的磨损,堆积边缘对表面粗糙度的影响取决于切削速度和未切削切屑厚度。我们的发现还表明,最小未切屑厚度与加工表面的平均粗糙度(R-z)之间存在密切关系。发现存在积屑瘤边缘时,未切屑的最小厚度约为边缘半径的10%。 (C)2016 Elsevier B.V.保留所有权利。

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