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Experimental Investigation of Surface Roughness and Power Consumption in Turning Operation of EN 31 Alloy Steel

机译:EN 31合金钢转动运转表面粗糙度和功耗的实验研究

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The paper presents an experimental study of power consumption and roughness characteristics of surface generated in turning operation of EN-31 alloy steel with TiN+Al2O3+TiCN coated tungsten carbide tool under different cutting parameters. The study shows the influences of three cutting parameters like spindle speed, depth of cut and feed rate affecting surface roughness as well as power consumption while turning operation of EN-31 alloy steel. The experimental setup includes five different spindle speed keeping feed rate of 0.08 mm/rev and depth of cut of 0.4 mm constant, five different feed rate keeping spindle speed of 710 rpm and depth of cut of 0.4 mm constant and five different depth of cut keeping feed rate of 0.08 mm/rev and spindle speed of 710 rpm constant. The experiments were conducted to investigate the effectiveness of surface roughness and power consumption in turning operation of EN 31 alloy steel.
机译:本文提出了在不同切削参数下用锡+ Al2O3 + TICN涂覆碳化钨工具在en-31合金钢的转动操作中产生的表面产生的实验研究。该研究表明,三个切割参数如主轴速度,切割和进料速率的深度,影响表面粗糙度以及en-31合金钢的运转时的功耗。实验装置包括五种不同的主轴速度保持速率为0.08 mm / rev和切削深度0.4 mm恒定,5种不同的进料速率保持710 rpm的主轴速度和0.4 mm恒定的切削深度和5个不同的剪切深度。进料速率为0.08 mm / rev和主轴速度为710 rpm常数。进行了实验,以研究EN 31合金钢转动操作中表面粗糙度和功耗的有效性。

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