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Machinability evaluation in hard turning of cold work tool steel (D2) with ceramic tools using statistical techniques

机译:利用统计技术评估冷加工工具钢(D2)与陶瓷工具硬车削的可加工性

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Turning hardened tool steel using ceramic cutting tool, has certain advantages over the traditional turning/hardening/cylindrical grinding practice in terms of increased productivity and reduced power consumption. The hard turning is generally performed without a coolant (additional environmental advantage).rnAn experimental investigation was carried out using ceramic cutting tools, composed approximately with (70%) of Al_2O_3 and (30%) of TiC, in surface finish operations on cold work tool steel D2 (AISI) heat treated to a hardness of 60 HRC.rnA plan of experiments, based on orthogonal arrays, was made in turning with prefixed cutting parameters in tool steel workpieces. A combined technique using orthogonal array and analysis of variance (ANOVA) was employed to investigate the machinability of cold work tool steel. The results of the tests shows that with a appropriate cutting parameters choice is possible to obtain a surface roughness (R_a < 0.8 μm) that allows to eliminate cylindrical grinding operations.
机译:与传统的车削/淬火/外圆磨削方法相比,使用陶瓷切削刀具进行车削淬火的工具钢在提高生产率和降低功耗方面具有某些优势。硬车削通常在不使用冷却剂的情况下进行(具有额外的环境优势)。rn在冷加工的表面光洁度操作中,使用陶瓷切削刀具进行了实验研究,该刀具大约由(70%)Al_2O_3和(30%)TiC组成对工具钢D2(AISI)进行了热处理,使其硬度达到60HRC。rn在车削时,以正交的切削参数为基础,制定了基于正交阵列的实验计划。采用正交阵列和方差分析(ANOVA)的组合技术研究冷作工具钢的切削性能。测试结果表明,通过适当的切削参数选择,可以获得能够消除圆柱磨削操作的表面粗糙度(R_a <0.8μm)。

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