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Effect of finite edge radius on ductile fracture ahead of the cutting tool edge in micro-cutting of A12024-T3

机译:有限刃半径对A12024-T3微切削中切削刃前延性断裂的影响

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Evidence of ductile fracture leading to material separation has been reported recently in ductile metal cutting [S. Subbiah, S.N. Melkote, ASME J. Manuf. Sci. Eng. 28(3) (2006)]. This paper investigates the effect of finite edge radius on such ductile fracture. The basic question of whether such ductile fracture occurs in the presence of a finite edge radius is explored by performing a series of experiments with inserts of different edge radii at various uncut chip thickness values ranging from 15 to 105 μm. Chip-roots are obtained in these experiments using a quick-stop device and examined in a scanning electron microscope. Clear evidence of material separation is seen at the interface zone between the chip and machined surface even when the edge radius is large compared to the uncut chip thickness. Failure is seen to occur at the upper, middle, and/or the lower edges of the interface zone. Based on these observations, a hypothesis is presented for the events leading to the occurrence of this failure when cutting with an edge radius tool. Finite element simulations are performed to study the nature of stress state ahead of the tool edge with and without edge radius. Hydrostatic stress is seen to be tensile in front of the tool and hence favors the occurrence of ductile fracture leading to material separation. The stress components are, however lower than those seen with a sharp tool.
机译:最近在韧性金属切削中已经报道了导致材料分离的韧性断裂的证据[S.苏比亚(Subbiah) Melkote,ASME J.Manuf。科学。 28(3)(2006)]。本文研究了有限边缘半径对这种延性断裂的影响。通过在不同的未切屑厚度范围为15到105μm的不同边缘半径的刀片上进行一系列实验,探索了是否存在有限的边缘半径时是否发生这种延性断裂的基本问题。在这些实验中,使用快速停止装置获得了片根,并在扫描电子显微镜中进行了检查。在切屑与加工表面之间的界面区域,即使边缘半径比未切屑厚度大,也可以清楚地看到材料分离的迹象。可以看到在界面区域的上,中和/或下边缘发生了故障。基于这些观察,提出了使用边缘半径工具进行切割时导致此故障发生的事件的假设。进行了有限元模拟,以研究带有和不带有边缘半径的刀具边缘之前的应力状态。静水压力在工具前被视为张紧,因此有利于延性断裂的发生,从而导致材料分离。但是,应力分量要比使用锋利的工具时要低。

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