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MODELLING OF SIZE EFFECTS ON BEHAVIOR OF THIN SHEET METALS FOR BIPOLAR PLATE MANUFACTURING

机译:双极板制造中薄板金属行为的尺寸效应模型

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The grain-to-feature size ratio in micro-forming processes is predicted to have a vital impact on the material behavior in addition to the well-known effect of the grain size itself as manifested by the Hall-Petch relation. In this study, the "size effects" on the material flow curve of thin sheet metals under hydraulic bulge testing conditions were investigated. The ratio of the sheet thickness to the material grain size(N = to/d)was used as a parameter to characterize the interactive effects between the specimen and the grain sizes at the micro-scales, while the ratio of the bulge die diameter to the sheet thickness(M = D_c/t_0)was used to represent the effect of the feature size in the bulge test. A systematic approach for determining the flow curve of thin sheet metals in bulge testing was discussed and presented. The results of the bulge tests at different scales showed a decrease in the material flow curve with a decrease in N and/or M values. New material models were developed to explain the changes in the material flow curve caused by the size effects. The explanation and prediction of the flow curve based on these models were shown to be in good agreement with the bulge test results in this study and in the literature.
机译:可以预测,在微成形工艺中,晶粒与特征尺寸之比对材料的行为具有至关重要的影响,除了众所周知的晶粒尺寸本身的影响(如Hall-Petch关系所示)之外。在这项研究中,研究了在水力膨胀测试条件下,“尺寸效应”对薄金属板材料流动曲线的影响。片材厚度与材料晶粒尺寸的比值(N = to / d)被用作表征试样和微观尺度上晶粒尺寸之间相互作用效应的参数,而凸模直径与板厚(M = D_c / t_0)用于表示凸出测试中特征尺寸的影响。讨论并提出了一种用于确定凸起测试中薄板金属流动曲线的系统方法。不同尺度下的膨胀试验结果表明,材料流动曲线减小,N和/或M值减小。开发了新的材料模型来解释由尺寸效应引起的材料流动曲线的变化。在这些研究和文献中,基于这些模型的流量曲线的解释和预测与膨胀测试结果非常吻合。

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