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Influences of Cutting Speed on Surface Roughness during Machining of Chromium Molybdenum Steel with Ceramic Insert Cutting Tool

机译:用陶瓷嵌刀切削工具加工切削速度对表面粗糙度的影响

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Hard turning experiments using an Al2O3+TiC coated insert cutting tool for machining AISI 4140 chromium molybdenum steel bar for automotive industry applications were investigated. Turning experiments were carried out with varying cutting speeds ranging from 150 to 220 m/min under conventional dry hard operation. Analysis of variance showed that average surface roughness was significantly affected by cutting speed at the level of significance of 0.05. Average surface roughness value at a cutting speed of 220 m/min was lowest compared to average values at cutting speeds of 150 and 180 m/min, based on the least significant difference method. Micro-wear behaviors identified in the experiments through SEM micrographs consisted of edge chipping and micro abrasion on the Al2O3+TiC coated inserts.
机译:研究了使用AL2O3 + TIC涂层切割工具的硬转动实验,用于加工AISI 4140铬钼钢筋用于汽车行业应用。在常规干燥硬操作下,具有不同切割速度的变化速度,在150至220米/分钟内进行。方差分析表明,平均表面粗糙度因切削速度而在0.05的意义水平下显着影响。基于最低显着差异方法,平均表面粗糙度值220m / min的切割速度为150和180米/分钟的平均值。通过SEM显微照片在实验中鉴定的微观行为包括在Al 2 O 3 + TiC涂层插入物上的边缘切削和微磨损。

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