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首页> 外文期刊>Journal of Materials Science Research >Design for Manufacturing of an Aluminum Superplastic AA5083 Alloy Plate-Fin Heat Exchanger
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Design for Manufacturing of an Aluminum Superplastic AA5083 Alloy Plate-Fin Heat Exchanger

机译:铝超塑性AA5083合金板翅式换热器的制造设计

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Compact, lightweight, strong, and corrosion-resistant heat exchangers are required for many applications. In heat exchangers, plate-fin exchangers design with corrugated fins of triangular cross-sections provide high heat transfer surface area to volume ratio. This study focuses on the design for manufacturing of an aluminum AA5083 alloy plate-fin heat exchanger. The superplastic forming method is considered for the fabrication of the heat exchanger. A two-dimensional plane strain finite element model is used to study the effect of the triangular fins’ aspect ratio on the thickness distribution and the required gas forming pressure cycles. The simulation results show that the thinning in deep channels can be improved by increasing the coefficient of friction but only up to a certain limit. In addition, increasing the coefficient of friction reduces the required applied pressure on the sheet and increases the forming time. The present effort represents a necessary step toward the design of sophisticated corrugated triangular fin surfaces considering both performance and manufacturability.
机译:许多应用需要紧凑,轻便,坚固且耐腐蚀的热交换器。在热交换器中,具有三角形横截面的波纹状翅片的板翅式热交换器设计提供了高的传热表面积与体积之比。这项研究的重点是铝AA5083合金板翅式热交换器的制造设计。在热交换器的制造中考虑了超塑性成形方法。二维平面应变有限元模型用于研究三角形散热片的纵横比对厚度分布和所需的气体形成压力循环的影响。仿真结果表明,通过增加摩擦系数,但只能达到一定的极限,可以改善深槽的变薄。另外,增加摩擦系数减小了在片材上所需的施加压力并增加了成形时间。考虑到性能和可制造性,目前的努力代表了设计复杂的波纹状三角形翅片表面的必要步骤。

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