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PREDICTION OF TOOL WEAR AND TOOL LIFE BY EXPERIMENT/MODELING/SIMULATION OF THE DIE COMPACTION PROCESS

机译:模拟/模拟芯片压实过程的刀具磨损和刀具寿命预测

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Prediction of tool life caused by tool wear is of great importance during die compaction processes in the powder metallurgy industry. In this study, experiment, modeling, and simulation are integrated to predict tool wear and life of the die. We utilized a specially-modified, "pin-onflat" reciprocating test to quantify the amount of tool wear with a matrix of experiments consisting of three tool materials and two mixture powders. The modified "loop test" is also employed to provide comparison results. We propose the new model of "wear work" by integration of frictional stress multiplied by velocity with respect to contact area and time. By combining wear data with information on the hardness of the die materials, we can predict tool wear and life. For complex components, the finite element simulation is used to calculate the wear work and to select critical factor with sensitivity analysis concept.
机译:粉末冶金工业中的模​​具压实过程中,刀具磨损引起的刀具寿命预测是非常重要的。在本研究中,实验,建模和仿真集成到预测模具的工具磨损和寿命。我们利用了专门改造的“针头型”往复测试,以通过三种工具材料和两个混合物粉末来量化刀具磨损量。还采用改进的“环路测试”来提供比较结果。我们通过相对于接触面积和时间乘以速度乘以速度乘以速度来提出“佩戴工作”的新模型。通过将磨损数据与模具材料的硬度相结合,我们可以预测工具磨损和寿命。对于复杂的组件,有限元模拟用于计算磨损工作并选择具有灵敏度分析概念的关键因素。

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