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首页> 外文期刊>Journal of Manufacturing Processes >Improving fatigue life of cold forging dies by finite element analysis: A case study
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Improving fatigue life of cold forging dies by finite element analysis: A case study

机译:有限元分析提高冷锻模具的疲劳寿命 - 以案例研究

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Cold forging tools fail mainly due to loss of dimensions (as a result of abrasive wear and plastic deformation) and fatigue failure. Since tooling costs represent a considerable share of the total cost in forging processes, improving fatigue life is a crucial aspect in the design of forging tools. The present study aimed to improve the fatigue life of a specific cold forging tool currently employed in the mass production of an automotive part. The stresses in the die were evaluated by means of finite element simulations, which were able to predict both the crack nucleation spot and its propagation direction, as observed in the tools employed in the production line. There is compelling evidence in the literature that fatigue life of a die is influenced by the amount of interference fit (preloading) to which it is subjected. Therefore, a slight alteration in the preloading profile was proposed, and the finite element analysis was repeated. Numerical results predicted a change from 597 MPa to 170 MPa in the highest principal stress. The design modification was then implemented in the production line and the expected mean life increased from 17,563 to 71,323 parts produced per tool. Overall, the procedure herein described may serve as a valuable tool for the design of cold working tools less prone to fatigue failure.
机译:冷锻造工具主要是由于尺寸损失(由于磨料磨损和塑性变形)和疲劳失效。由于工具成本代表了锻造过程总成本的相当大的份额,因此提高了疲劳生活是锻造工具设计中的一个关键方面。本研究旨在改善目前用于汽车部件的批量生产的特定冷锻造工具的疲劳寿命。通过有限元模拟评估模具中的应力,其能够预测生产线中使用的工具中观察到的裂缝成核点和其传播方向。在文献中有令人尖锐的证据,即死的疲劳寿命受到它受到的抗干量(预加载)的影响。因此,提出了预加载轮廓的轻微改变,重复了有限元分析。数值结果预测最高主要压力597 MPa至170MPa的变化。然后在生产线中实施设计修改,预期的平均寿命从每个工具生产的17,563增加到71,323份。总的来说,本文所述的方法可以作为设计冷加工工具的设计工具不太容易疲劳失败。

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