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Strain rate sensitivity and high temperature deformation mechanisms of cast Zn-22A1 alloy foams

机译:铸造Zn-22a1合金泡沫的应变率灵敏度和高温变形机制

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Zn-22A1 eutectic alloy is a typical superplastic material which exhibits over 500% elongation at high temperature. Superplastic Zn-22A1 alloy foams were successfully manufactured through a conventional casting process. Foaming temperature was about 750 K which was lower than that of conventional aluminum foams. The porosity of Zn-22A1 alloy foams is between 50 and 80%. The cell wall consisted of fine equiaxial crystal grains after solution treatment. High temperature deformation behavior of Zn-22A1 alloy foams was evaluated through tensile and compressive tests at high temperature. Zn-22A1 alloy foams exhibited high strain rate sensitivity of 0.55, which was caused by superplastic deformation of the cell wall material. High temperature deformation mechanism can be explained using the new parameter of local strain rate. The Zn-22A1 foams showed relatively high ductility at high temperature compered to aluminum foams. This is because of the superplastic deformation induced by the fine microstructure in the cell wall. In addition, most superplastic materials have excellent damping property due to their grain boundary sliding. Present Zn-22A1 foams are applicable as either shock absorbing or damping material in the future.
机译:Zn-22A1共晶合金是一种典型的超塑性材料,在高温下表现出超过500%的伸长率。通过传统的铸造方法成功地制造超塑性Zn-22a1合金泡沫。发泡温度约为750 k,其低于常规铝泡沫的750 k。 Zn-22a1合金泡沫的孔隙率在50至80%之间。细胞壁由溶液处理后的细平衡晶粒组成。通过在高温下通过拉伸和压缩试验评估Zn-22A1合金泡沫的高温变形行为。 Zn-22a1合金泡沫表现出高应变率灵敏度为0.55,这是由细胞壁材料的超塑性变形引起的。使用局部应变率的新参数可以解释高温变形机制。 Zn-22a1泡沫在高温下掺入铝泡沫的高温下表现出相对高的延展性。这是因为通过细胞壁中的细微观结构引起的超塑性变形。此外,由于其晶界滑动,大多数超塑性材料具有出色的阻尼性。目前Zn-22A1泡沫可在未来适用于减震或阻尼材料。

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