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Effect of Cutting Parameters on Sustainable Machining Performance of Coated Carbide Tool in Dry Turning Process of Stainless Steel 316

机译:切削参数对不锈钢干式碳化物工具可持续加工性能的影响316

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The manufacturing industry aims to produce many products of high quality with relatively less cost and time. Different cutting parameters affect the machining performance of surface roughness, cutting force, and material removal rate. Nevertheless, a few studies reported on the effects of sustainable factors such as power consumed, cycle time during machining, and tool life on the dry turning of AISI 316. The present study aims to evaluate the machining performance of coated carbide in the machining of hard steel AISI 316 under the dry turning process. The influence of cutting parameters of cutting speed, feed rate, and depth of cut with their five (5) levels is established by a central composite design. Highly significant parameters were determined by analysis of variance (ANOVA), and the main effects of power consumed and time during machining, surface roughness, and tool wear were observed. Results showed that the cutting speed was proportional to power consumption and tool wear. Meanwhile, insignificant to surface roughness, feed rate most significantly affected surface roughness and power consumption followed by depth of cut.
机译:制造业旨在生产高质量的许多产品,成本较低。不同的切割参数会影响表面粗糙度,切割力和材料去除率的加工性能。尽管如此,一些研究报告了可持续因素的影响,例如电力消耗,循环时间,以及AISI的干式转向的刀具寿命。目前的研究旨在评估涂层碳化物在努力加工中的加工性能钢AISI 316在干式转弯过程下。通过中央复合设计建立了切削速度,进料速率和切割深度的切割参数和切割深度的影响。通过对方差(ANOVA)的分析来确定高显着的参数,并且观察到在加工,表面粗糙度和工具磨损过程中消耗和时间的主要影响。结果表明,切割速度与功耗和工具磨损成比例。同时,对表面粗糙度微不足道,进料速率最显着影响表面粗糙度和功耗,然后是切割深度。

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