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Optimal response of conical tool semi angle in ductile metal sheets indentation and its governing mechanics

机译:圆锥形工具半角在延性金属薄板压痕中的最佳响应及其控制机理

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摘要

The nonlinear dependence aspect of various conical tool indentation parameters leading to an optimum tool semi angle value for easiest perforation is plotted and discussed explicitly in this work with the conclusion that tool angle has an optimum response towards most of the indentation parameters. Around this optimum angle, the aluminium sheets showed minimum fracture toughness as well as minimum work input to overcome the offered resistance. At the end, the mechanism leading to this phenomenon is presented with the conclusion that plastic flow dominates as the dimple semi cone angle reaches 35 and both pre and post plastic flow perforations lead the tool semi cone angle value towards this dimple cone semi angle of plastic flow initiation for its optimum performance. It is also concluded that specimen material failure is solely under tensile hoop stress and hence results into radial cracks initiation and propagation.
机译:在这项工作中,绘制并讨论了各种圆锥形刀具压痕参数的非线性相关性,这些参数导致最佳的工具半角度值最容易打孔,并得出结论,即刀具角对大多数压痕参数具有最佳响应。在这个最佳角度附近,铝板显示出最小的断裂韧性以及最小的功投入以克服所提供的阻力。最后,给出了导致这种现象的机理,得出的结论是,当凹窝半锥角达到35时,塑性流占主导地位,前,后塑性流孔都将工具半锥角值引向该凹窝半锥角。流量启动,以实现最佳性能。还得出结论,试样材料的破坏仅在拉伸环向应力作用下发生,因此导致径向裂纹的产生和扩展。

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