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首页> 外文期刊>International journal of hydrogen energy >Fracture prediction in the stamping of titanium bipolar plate for PEM fuel cells
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Fracture prediction in the stamping of titanium bipolar plate for PEM fuel cells

机译:PEM燃料电池钛双极板冲压裂缝预测

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摘要

In this paper, the stamping process was employed to fabricate metallic bipolar plates (MBPs). An account of low formability of the commercially pure titanium (CP-Ti), the fracture is the most common defect during its plastic deformation. Consequently, prediction of the fracture onset during the stamping was studied using three ductile fracture criteria including Rice-Tracey, Brozzo, Ayada, and a developed forming limit criteria based on consideration of the material size effect. The damage value in the lateral and central channel was evaluated to determine the critical channel and element. According to the results, the most accurate fracture prediction during stamping of titanium bipolar plates could be obtained via Brozzo ductile fracture criteria with an error rate of 3.68% compared to experiments. Moreover, the strain-based criteria represent higher fracture prediction errors compared to damage criteria. The stress state analysis showed the variation of stress triaxiality during the process leading to less accuracy of the strain-based criteria. According to the results, the damage function of the ductile damage criteria was more reliable for the semi-proportional loading path during the stamping of the titanium bipolar plates which makes them more suitable for accurate fracture prediction during the process. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文采用冲压工艺制造金属双极板(Mbps)。商业纯钛(CP-TI)的较低成形性的陈述,裂缝是其塑性变形过程中最常见的缺陷。因此,使用三个延性骨折标准研究了包括稻田裂缝,布罗佐,Ayada,基于材料尺寸效应的三个延性骨折标准,研究了冲压期间裂缝发作的预测。评估横向和中央通道中的损伤值以确定关键通道和元素。根据结果​​,可以通过Brozzo延展性骨折标准获得钛双极板冲压期间的最准确的断裂预测,与实验相比,逆延性骨折标准获得3.68%的错误率。此外,与损坏标准相比,基于应变的标准代表了更高的断裂预测误差。应力状态分析显示过程中应力三轴的变化导致基于应变标准的准确性较低。根据结果​​,延展性损伤标准的损伤功能对于钛双极板的冲压过程中的半比例负载路径更可靠,这使得它们更适合于过程中的精确断裂预测。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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