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Gas blowforming of grooves on superplastic aluminum alloy sheet to increase the surface area

机译:对超塑铝合金板上的凹槽进行气体吹塑以增加表面积

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摘要

The purpose of this study is to investigate the application of superplasticity to blowforming. To form an efficient heat exchanger plate, blowforming is carried out to increase the surface area of the plate as much a~ possible. A plate made of7475 aluminum alloy (t = 1.5 mm) is placed over the hot die which results in the formation of concentric grooves on the plate. The formability of grooves was examined by using two types die shapes with a constant gas pressure of 0. 5MPa. One of theshapes has four grooves (depth : H = 8 mm) and the other has three grooves (H = 10 mm), both of which have a surface area 2.5 times larger than the original area. In the latter case, the ratio of the number of specimens blowformed without fractures tothe total number of specimens blowformed was small (~30%). The distributions of the thickness strains were not symmetrical with respect to the center of grooves, and the value of the strain at the groove wall on the side of the die center was greater than that on the outer side of the die. Thus, it is necessary to consider the fluidity of the material which flows into the grooves. On the other hand, the radius of the die corner, R, may have little influence on the blowformability.
机译:这项研究的目的是研究超塑性在吹塑中的应用。为了形成有效的热交换器板,进行吹塑以尽可能多地增加板的表面积。将由7475铝合金制成的板(t = 1.5毫米)放在热模上,从而在板上形成同心凹槽。通过使用两种恒定气压为0. 5MPa的模具来检查凹槽的可成型性。其中一个形状具有四个凹槽(深度:H = 8毫米),另一个形状具有三个凹槽(H = 10毫米),两个凹槽的表面积都比原始区域大2.5倍。在后一种情况下,未破裂吹制的试样数量与吹制的试样总数之比很小(约30%)。厚度应变的分布相对于凹槽中心不对称,并且在模具中心侧的凹槽壁处的应变值大于在模具外侧的应变值。因此,必须考虑流入凹槽的材料的流动性。另一方面,模角的半径R对吹塑性几乎没有影响。

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