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Analysis and modeling of surface roughness based on cutting parameters and tool nose radius in turning of AISI D2 steel using CBN tool

机译:基于切割参数的表面粗糙度和刀尖半径用CBN工具转动AISI D2钢的表面粗糙度的分析与建模

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摘要

Surface roughness of components having hardness above 45 HRC (Rockwell hardness) like bearings, dies, tools etc. draws specific attention during the turning process. Analysis of surface roughness is presented by many researchers based on cutting conditions during hard turning. In this paper, analysis of surface roughness of AISI D2 steel in hard turning with CBN (cubic boron nitride) tools is performed based on variables like cutting speed, feed and nose radius at a constant depth of cut. Variation of feed affects surface roughness most significantly followed by cutting speed and tool nose radius. Prediction of surface roughness considering simultaneous effect of cutting parameters and tool geometry is very difficult. Here, a mathematical model is developed based on simultaneous effect of feed, cutting speed and nose radius. Moreover, developed model is validated using different sets of cutting conditions and found in close agreement with experimental results. (C) 2019 Elsevier Ltd. All rights reserved.
机译:具有高于45小时(罗克韦尔硬度)的组件的表面粗糙度,如轴承,模具,工具等在转动过程中引起了特别的注意。许多研究人员基于硬转弯期间的切割条件,介绍了表面粗糙度的分析。在本文中,基于切割速度,饲料和鼻径的变量,在恒定的切割深度下,进行CBN(立方硼氮化物)工具中AISI D2钢的表面粗糙度分析。进料的变异影响表面粗糙度最显着,然后切割速度和刀尖半径。考虑到切割参数和刀具几何同时效果的表面粗糙度预测非常困难。这里,基于饲料,切割速度和鼻径半径的同时效果开发了数学模型。此外,使用不同的切割条件验证开发的模型,并与实验结果密切相关。 (c)2019年elestvier有限公司保留所有权利。

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