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Tensile Properties and Blow Forming of 5083 Aluminum Alloy Recycled by Solid-State Recycling

机译:固态回收的5083铝合金的拉伸性能和吹塑

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The tensile properties and blow forming characteristics of 5083 Al alloy recycled by solid-state recycling were investigated from the viewpoint of oxide contamination. Three types of machined chip with different volumes were recycled by hot extrusion and hot rolling in air. Oxide layers, which were contaminants from the machined chip surface, were distributed in the extrusion direction for the recycled specimens. Oxygen concentration in the recycled specimens increased with the total surface area of the machined chips per unit volume. From the result of the tensile tests performed at 773 K, the elongation to failure of the specimen made of smaller machined chips was lower, than that of the specimens made of larger machined chips, in spite of their same strain rate sensitivity of 0.5. Similarly, in the blow-forming tests at 773 K, the specimen made of smaller machined chips exhibited a lower formability. The low elongation to failure and formability of the recycled specimens made of smaller machined chips are likely to be attributed to a greater contamination of oxide. Thus, oxide contamination has a detrimental effect on the superplastic properties of recycled Al alloy.
机译:从氧化物污染的角度研究了5083铝合金通过固态回收方法的拉伸性能和吹塑特性。通过热挤压和空气热轧,回收了三种不同体积的加工切屑。氧化物层(来自加工过的切屑表面的污染物)在挤压方向上分布,用于回收的样品。回收样品中的氧气浓度随单位体积加工切屑的总表面积增加而增加。根据在773 K下进行的拉伸试验的结果,尽管应变率敏感性为0.5,但由较小机加工切屑制成的样品的断裂伸长率要比由较大机加工切屑制成的样品的断裂伸长率低。同样,在773 K的吹塑测试中,由较小机加工切屑制成的样品的成型性较低。由较小机加工切屑制成的回收样品的低断裂伸长率和可成形性很可能归因于较大的氧化物污染。因此,氧化物污染对回收的铝合金的超塑性具有有害作用。

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