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Dynamic compressive deformation behavior of SiC-particulate-reinforced A356 Al alloy matrix composites fabricated by liquid pressing process

机译:液相压铸制备SiC颗粒增强A356铝合金基复合材料的动态压缩变形行为

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摘要

In this study, A356 Al alloy composites reinforced with SiC particulates (SiC_p), whose SiC_p volume fraction was quite high (about 56 vol%) for a candidate surface material of multi-layered armors, were fabricated by a liquid pressing process, and their dynamic compressive properties were investigated by using a split Hopkinson pressure bar. Defects such as misinfiltration or pores were eliminated, but about 2 vol% of eutectic Si particles and about 3 vol% of Fe-Al intermetallic compound particles were contained in the Al matrix. According to the dynamic compressive test results, dynamic compressive strength and strain were much higher than quasi-static ones because of strain-rate hardening effect and existence of molten Al matrix formed by adiabatic heating. The as-cast composite showed the best combination of dynamic strength and strain, together with the highest dynamic toughness, because the crack propagation was effectively blocked by the molten Al matrix and deformation band formation, while the T6-heat-treated composite showed the lowest compressive strain in spite of the highest strength. These findings suggested that the present Al-SiC_p composites could be reliably applied to armors because the dynamic toughness or resistance to fracture was much higher under the dynamic loading than under the quasi-static loading.
机译:在这项研究中,通过液体压制工艺制造了用SiC颗粒(SiC_p)增强的A356铝合金复合材料,其SiC_p的体积分数非常高(约56 vol%),可以用作多层装甲的候选表面材料。通过使用分开的Hopkinson压力棒研究了动态压缩特性。消除了诸如误渗入或孔之类的缺陷,但是在Al基体中包含约2vol%的共晶Si颗粒和约3vol%的Fe-Al金属间化合物颗粒。根据动态压缩试验的结果,由于应变速率硬化效应和绝热加热形成的熔融Al基体的存在,动态压缩强度和应变比准静态的高得多。铸态复合材料表现出最佳的动态强度和应变组合,以及最高的动态韧性,这是因为熔融铝基体和变形带的形成有效地阻止了裂纹的扩展,而经T6热处理的复合材料则表现出最低的动态强度和应变。尽管强度最高,但仍具有压缩应变。这些发现表明,本发明的Al-SiC_p复合材料可以可靠地应用于装甲,因为在动态载荷下的动态韧性或抗断裂性比在准静态载荷下高得多。

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