首页> 外文期刊>Journal of Cleaner Production >Enhancing tool life, and reducing power consumption and surface roughness in milling processes by nanolubricants and laser surface texturing
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Enhancing tool life, and reducing power consumption and surface roughness in milling processes by nanolubricants and laser surface texturing

机译:通过纳米润滑剂和激光表​​面纹理化,延长了刀具寿命,并减少了铣削过程中的功率消耗和表面粗糙度

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In this study, the effect of applying two different laser surface texturing (LST) patterns to cutting tools, as well as adding nanoparticles (NPs) to a lubricating cutting fluid in a machining process carried out in a Computer Numerical Control (CNC) machine were analyzed. Commonly, machining operations involve high wear of cutting inserts that limit their useful life, provide a poor surface finish of the workpiece and high energy consumption of the process, all of which increase production costs. The texturing patterns proposed were micro-circles and micro-channels and were applied on the rake face of the cutting tools. The NP selected for this study was a montmorillonite nanoclay (MMT) due to its ability to be produced naturally, and for being inexpensive and environmentally friendly. A concentration of 0.13 wt% was used for preparing the nanolubricant cutting fluids. An AISI 1018 steel was selected for the milling experiments at fixed machining parameters. The response variables investigated were: spindle load (related to power and energy consumption of the milling process), radius of the cutting insert (related to wear of the tool), and surface roughness of the steel plates (related to surface quality). The statistical and graphical analyses showed that for spindle load an improvement of up to 11% was found when LST of micro-channels and NPs where combined, whereas no effect was found when they were applied separately. For surface roughness, using tools with textured micro-channels or adding NPs to the cutting fluid were both beneficial individually. In the case of cutting insert radius both micro-circles and micro-channels reduced wear by 64% and 55%, respectively, compared to no LST. The results obtained in this study demonstrate that there is a synergistic effect found when combining LST patterns on cutting tools and adding NPs to the lubricant that increases the efficiency of the milling processes by reducing wear of the cutting tool, improving surface finish, and lowering spindle load. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,在计算机数控(CNC)机器上进行的加工过程中,将两种不同的激光表面纹理(LST)模式应用于切削工具,以及向润滑性切削液中添加纳米颗粒(NPs)的效果是这样的:分析。通常,机加工操作涉及切削刀片的高磨损,这限制了它们的使用寿命,提供了较差的工件表面光洁度和较高的工艺能耗,所有这些都增加了生产成本。提出的纹理化图案是微圆和微通道,并应用于切削工具的前刀面。这项研究选择的NP是蒙脱土纳米粘土(MMT),因为它具有天然生产的能力,而且价格便宜且对环境友好。浓度为0.13wt%用于制备纳米润滑剂切削液。选择AISI 1018钢进行固定加工参数下的铣削实验。研究的响应变量为:主轴负载(与铣削过程中的功率和能量消耗有关),切削刀片的半径(与工具的磨损有关)和钢板的表面粗糙度(与表面质量有关)。统计和图形分析表明,将微通道和NP的LST组合使用时,对于主轴负载,最多可提高11%,而单独使用时则没有效果。对于表面粗糙度,单独使用带纹理微通道的工具或向切削液中添加NP都是有益的。与没有LST相比,在切削刀片半径时,微圆和微通道都分别减少了64%和55%的磨损。在这项研究中获得的结果表明,当在刀具上组合LST模式并向润滑剂中添加NP时,会发现协同作用,从而通过减少刀具的磨损,改善表面光洁度和降低主轴来提高铣削效率。加载。 (C)2019 Elsevier Ltd.保留所有权利。

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