Microstructure and Mechanical Properties of Al2O3p/AZ91 Magnesium Matrix Laminated Material Adjusted by Freezing Temperature

IF 2.9 2区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
Ze-Xin Bai, Kun-Kun Deng, Ze-Qi Du, Kai-Bo Nie, Chao Xu, Quan-Xin Shi
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Abstract

The Al2O3 laminated preforms with different layers thickness were prepared by freezing casting in present work. Then, the Al2O3p/AZ91 magnesium matrix laminated materials were obtained by infiltrating the AZ91 alloy melt into the Al2O3 laminated preform based on pressure infiltration process. Subsequently, the influence of freezing temperature on the microstructure, mechanical properties and fracture behavior of magnesium-based laminates was investigated. The results indicated that with the decrease of freezing temperature, the thickness of Al2O3 layers decreases gradually, the number of layers increases obviously, and the interlayers spacing decreases. Accompanied with the decrease of interlayers spacing, the size of Mg17Al12 phase precipitated in the AZ91 alloy layers was refined, and the compression strength and strain were both improved obviously. The micro-cracks initiated in Al2O3 layers during loading process, while the AZ91 layers could effectively suppress the initiation and propagation of micro-cracks. Furthermore, the changing layers structure influenced by the decrease of freezing temperature had significant inhibiting effect on the initiation and propagation of micro-cracks, which endowed the Al2O3p/AZ91 magnesium matrix laminated materials with better strength and toughness. Notably, the best compression properties of Al2O3p/AZ91 magnesium matrix laminated materials could be obtained at the freezing temperature of − 50 °C, the compression strength and elastic modulus of which were the 160% and 250% of monolithic AZ91 alloy, respectively.

Abstract Image

受冷冻温度影响的 Al2O3p/AZ91 镁基质层压材料的微观结构和力学性能
本研究采用冷冻铸造法制备了不同层厚的 Al2O3 层压预型件。然后,基于压力渗透工艺,将 AZ91 合金熔体渗透到 Al2O3 层压预型件中,得到 Al2O3p/AZ91 镁基层压材料。随后,研究了冷冻温度对镁基层压材料微观结构、力学性能和断裂行为的影响。结果表明,随着冷冻温度的降低,Al2O3 层厚度逐渐减小,层数明显增加,层间距减小。伴随着层间距的减小,AZ91 合金层中析出的 Mg17Al12 相的尺寸得到细化,抗压强度和应变均有明显提高。在加载过程中,Al2O3 层会产生微裂纹,而 AZ91 层则能有效抑制微裂纹的产生和扩展。此外,受冷冻温度降低的影响,层状结构的变化对微裂纹的产生和扩展有显著的抑制作用,从而使 Al2O3p/AZ91 镁基层压材料具有更好的强度和韧性。值得注意的是,Al2O3p/AZ91 镁基层压材料在-50 °C的冷冻温度下可获得最佳压缩性能,其压缩强度和弹性模量分别是单片 AZ91 合金的 160% 和 250%。
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来源期刊
Acta Metallurgica Sinica-English Letters
Acta Metallurgica Sinica-English Letters METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
6.60
自引率
14.30%
发文量
122
审稿时长
2 months
期刊介绍: This international journal presents compact reports of significant, original and timely research reflecting progress in metallurgy, materials science and engineering, including materials physics, physical metallurgy, and process metallurgy.
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