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Investigating the Machinability of Al-Si-Cu cast alloy containing bismuth and antimony using coated carbide insert

机译:使用涂层硬质合金刀片研究含铋和锑的Al-Si-Cu铸造合金的可加工性

摘要

Surface roughness and cutting force are two key measures that describe machined surface integrity and power requirement evaluation, respectively. This investigation presents the effect of melt treatment with addition of bismuth and antimony on machinability when turning Al-11 Si-2 Cu alloy. The experiments are carried out under oblique dry cutting conditions using a PVD TIN-coated insert at three cutting speeds of 70, 130 and 250 m/min, feed rates of 0.05, 0.1, 0.15 mm/rev, and 0.05 mm constant depth of cut. It was found that the Bi-containing workpiece possess the best surface roughness value and lowest cutting force due to formation of pure Bi which plays an important role as a lubricant in turning process, while Sb-containing workpiece produced the highest cutting force and highest surface roughness value. Additionally, change of silicon morphology from flake-like to lamellar structure changed value of cutting force and surface roughness during turning. (C) 2014 Elsevier Ltd. All rights reserved.
机译:表面粗糙度和切削力是分别描述机加工表面完整性和功率需求评估的两个关键指标。这项研究提出了在添加Al-11 Si-2 Cu合金时,添加铋和锑进行熔融处理对可切削性的影响。实验是在斜干切削条件下使用PVD TIN涂层刀片以70、130和250 m / min的三种切削速度,0.05、0.1、0.15 mm / rev的进给速度和0.05 mm恒定切削深度进行的。发现含Bi的工件由于形成了纯Bi而具有最佳的表面粗糙度值和最低的切削力,而Bi在车削过程中起着重要的润滑剂的作用,而含Sb的工件则产生了最高的切削力和最高的表面粗糙度值。另外,硅形态从薄片状变为层状结构,改变了车削时的切削力和表面粗糙度值。 (C)2014 Elsevier Ltd.保留所有权利。

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