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Microstructure and Compressive Properties of AI/AI_2O_3 Syntactic Foams

机译:AI / AI_2O_3句法泡沫的微观结构和压缩性能

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Metal matrix syntactic foams with relativity low density (2.03 g/cm3) were prepared by stir casting method. The syntactic foam is comprised of alumina hollow spheres with a diameter range of 1.0-1.5 mm as reinforcement and ZL111 aluminum alloy as matrix. Calcium particles are used to increase the viscosity of the melt to ensure that low density hollow spheres are immersed in the melt. Microstructure characteristics and quasi-static compressive properties of syntactic foams were studied. The hollow spheres were uniformly distributed in the aluminum matrix, and the interface between them was in continuous contact. Compressive stress-strain curve exhibits three distinct stages of deformation: (i) the linear elastic stage; (ii) the plateau area; (iii) final densification stage. The compression strength and plateau stress are 85 MPa and 75 MPa, respectively. The main reasons for the sample failure are the collapse of hollow spheres and the formation of multiple shear bands.
机译:通过搅拌浇铸法制备了相对密度低的金属基体复合泡沫(2.03 g / cm3)。所述复合泡沫由直径为1.0-1.5mm的氧化铝空心球作为增强材料和ZL111铝合金作为基体组成。钙颗粒用于增加熔体的粘度,以确保将低密度空心球浸入熔体中。研究了句法泡沫的微观结构特征和准静态压缩性能。空心球均匀分布在铝基质中,并且它们之间的界面连续接触。压缩应力-应变曲线表现出三个不同的变形阶段:(i)线性弹性阶段; (ii)高原地区; (iii)最终致密化阶段。抗压强度和平台应力分别为85 MPa和75 MPa。样品失效的主要原因是空心球的破裂和多个剪切带的形成。

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