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Material behaviour in metal cutting: strains, strain rates and temperatures in chip formation

机译:金属切削中的材料行为:切屑形成中的应变,应变率和温度

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A major problem in finding the flow stress in metal cutting is the intense circumstances under which deformation takes place in the chip root. Large deformations are imposed on the workpiece material at high speed in a very small area. This results in mechanical material behaviour far removed from that encountered in conventional material tests. Therefore, to determine the flow stress in cutting it is necessary to determine the conditions under which the material is being deformed.This paper describes how the strains, strain rates and temperatures have been determined in orthogonal cutting tests of steel AISI 1045 and aluminium AA 6082-T6. It appears that in the region where the chip is separated from the workpiece (i.e. the primary shear zone) the workpiece material is sheared considerably to equivalent strains in the order of 1-2. Also, the strain rate in the primary shear zone is found to be very large: in the order of 2.0 X 10~4 s~(-1). To find the temperatures in metal cutting an IR camera is used. It appears that the feed rate and cutting speed hardly influence the shear plane temperature. The measured shear plane temperature is approximately 290 deg C in the case of the steel and approximately 190 deg C in the case of the aluminium alloy.
机译:在金属切削中发现流应力的主要问题是在切屑根部发生变形的强烈环境下。在很小的区域内,高速将大的变形施加到工件材料上。这导致机械材料行为与常规材料测试中所遇到的行为相去甚远。因此,要确定切削时的流应力,必须确定材料变形的条件。本文介绍了如何在AISI 1045钢和AA 6082铝的正交切削试验中确定应变,应变率和温度-T6。似乎在切屑与工件分离的区域(即主剪切区)中,工件材料被相当大地剪切为1-2级的等效应变。此外,发现主剪切区的应变率非常大:约为2.0 X 10〜4 s〜(-1)。为了找到金属切割中的温度,使用了红外热像仪。看来进给速度和切削速度几乎不会影响剪切平面温度。在钢的情况下,测得的剪切平面温度约为290℃,在铝合金的情况下,约为190℃。

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