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首页> 外文期刊>International journal of hydrogen energy >Study of thickness distribution and dimensional accuracy of stamped metallic bipolar plates
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Study of thickness distribution and dimensional accuracy of stamped metallic bipolar plates

机译:冲压金属双极板的厚度分布和尺寸精度的研究

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The aim of the present paper is to fabricate metallic bipolar plates (BPPs) with active area of 100 cm(2) modeled on an industrial gas flow field scheme. In order to produce these plates, a stamping process has been employed to reduce cost and increase production speed. 316L stainless steel sheets with the thickness of 0.1 mm have been used. The effect of forming forces on channel filling depth, channel width, rib width, the uniformity in the depth of formed channels and the thickness distribution of channels have also been studied. The stress and strain distributions of formed bipolar plate are investigated using finite element simulation. The results reveal that the stamping process does have the ability to produce a perfect bipolar plate by one-step forming die for desired dimensions. Moreover, increasing the stamping force to an optimum level has insignificant effect on the depth of the channels. However, stamping force increment results in an increase in width of the channels and ribs. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文的目的是制造一种金属双极板(BPPs),其有效面积为100 cm(2),以工业气体流场方案为模型。为了生产这些板,已经采用冲压工艺来降低成本并提高生产速度。已使用厚度为0.1毫米的316L不锈钢板。还研究了成形力对通道填充深度,通道宽度,肋宽度,所形成通道深度的均匀性和通道厚度分布的影响。使用有限元模拟研究了所形成的双极板的应力和应变分布。结果表明,冲压工艺确实具有通过一步成型模具制造出理想尺寸的完美双极板的能力。此外,将冲压力增加到最佳水平对通道的深度影响不大。但是,冲压力的增加导致通道和肋的宽度增加。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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