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Tensile Properties and Fracture Behavior of Aluminum Alloy Foam Fabricated from Die Castings without Using Blowing Agent by Friction Stir Processing Route

机译:摩擦搅拌下不使用发泡剂的压铸铝合金泡沫的拉伸性能和断裂行为

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摘要

Al foam has been used in a wide range of applications owing to its light weight, high energy absorption and high sound insulation. One of the promising processes for fabricating Al foam involves the use of a foamable precursor. In this study, ADC12 Al foams with porosities of 67%–78% were fabricated from Al alloy die castings without using a blowing agent by the friction stir processing route. The pore structure and tensile properties of the ADC12 foams were investigated and compared with those of commercially available ALPORAS. From X-ray computed tomography (X-ray CT) observations of the pore structure of ADC12 foams, it was found that they have smaller pores with a narrower distribution than those in ALPORAS. Tensile tests on the ADC12 foams indicated that as their porosity increased, the tensile strength and tensile strain decreased, with strong relation between the porosity, tensile strength, and tensile strain. ADC12 foams exhibited brittle fracture, whereas ALPORAS exhibited ductile fracture, which is due to the nature of the Al alloy used as the base material of the foams. By image-based finite element (FE) analysis using X-ray CT images corresponding to the tensile tests on ADC12 foams, it was shown that the fracture path of ADC12 foams observed in tensile tests and the regions of high stress obtained from FE analysis correspond to each other. Therefore, it is considered that the fracture behavior of ADC12 foams in relation to their pore structure distribution can be investigated by image-based FE analysis.
机译:铝泡沫由于其重量轻,能量吸收高和隔音性好而已被广泛应用于各种应用中。制造Al泡沫的有前途的方法之一涉及使用可发泡的前体。在这项研究中,ADC12 Al泡沫的孔隙率为67%–78%,是通过铝合金压铸件通过摩擦搅拌工艺路线而没有使用发泡剂制成的。对ADC12泡沫的孔结构和拉伸性能进行了研究,并与市售ALPORAS进行了比较。通过X射线计算机断层扫描(X射线CT)观察ADC12泡沫的孔结构,发现它们比ALPORAS的孔更小,分布更窄。在ADC12泡沫材料上进行的拉伸试验表明,随着孔隙率的增加,拉伸强度和拉伸应变降低,并且孔隙率,拉伸强度和拉伸应变之间具有很强的关系。 ADC12泡沫材料表现出脆性断裂,而ALPORAS表现出韧性断裂,这是由于用作泡沫塑料基材的铝合金的特性所致。通过使用与对ADC12泡沫进行拉伸测试相对应的X射线CT图像进行基于图像的有限元(FE)分析,结果表明,在拉伸测试中观察到的ADC12泡沫的断裂路径与从FE分析获得的高应力区域相对应对彼此。因此,认为可以通过基于图像的有限元分析来研究ADC12泡沫的破裂行为与其孔隙结构分布的关系。

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