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Effect of Heat Treatment on the Compressive Behavior of Zinc Alloy ZA27 Syntactic Foam

机译:热处理对锌合金ZA27句法泡沫抗压行为的影响

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摘要

Zinc alloy (ZA27) syntactic foams (SF) were manufactured using expanded perlite (EP) particles and counter-gravity infiltration casting. Due to a variation of the metallic matrix content, the density of the produced foam samples varied from 1.78 to 2.03 g·cm−3. As-cast and solution heat-treated samples were tested to investigate the compressive properties of the ZA27 syntactic foam. To this end, quasi-static compression tests were conducted. In addition, microstructural analysis of the as-cast and heat-treated syntactic foams was carried out using scanning electron microscopy. The results indicate that the heat treatment alters the microstructure of the ZA27 alloy matrix from a multiphase dendrite to a spheroidized microstructure with improved ductility. Moreover, the heat treatment considerably enhances the energy absorption and plateau stress ( σ pl ) of the syntactic foam. Optical analysis of the syntactic foams under compression shows that the dominant deformation mechanism of the as-cast foams is brittle fracture. In comparison, the heat-treated samples undergo a more ductile deformation.
机译:使用膨胀的珍珠岩(EP)颗粒和反重重力渗透铸造制造锌合金(ZA27)句法泡沫(SF)。由于金属基质含量的变化,所产生的泡沫样品的密度从1.78变化到2.03g·cm-3。测试和溶液进行热处理样品以研究ZA27句法泡沫的压缩性能。为此,进行准静态压缩测试。此外,使用扫描电子显微镜进行浇铸和热处理的语法泡沫的微观结构分析。结果表明,热处理将ZA27合金基质基质的微观结构从多相树枝状物中改变为具有改进的延展性的球化微结构。此外,热处理显着增强了语法泡沫的能量吸收和平台应力(σpl)。压缩下的语法泡沫的光学分析表明,铸造泡沫的显性变形机理是脆性骨折。相比之下,热处理样品经历更大的延展性变形。

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