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首页> 外文期刊>Journal of Materials Science >Effect of hollow sphere size and size distribution on the quasi-static and high strain rate compressive properties of Al-A380–Al_2O_3 syntactic foams
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Effect of hollow sphere size and size distribution on the quasi-static and high strain rate compressive properties of Al-A380–Al_2O_3 syntactic foams

机译:空心球尺寸和尺寸分布对Al-A380–Al_2O_3复合泡沫准静态和高应变速率压缩性能的影响

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摘要

Metal matrix syntactic foams are promising materials for energy absorption; however, few studies have examined the effects of hollow sphere dimensions and foam microstructure on the quasi-static and high strain rate properties of the resulting foam. Aluminum alloy A380 syntactic foams containing Al_2O_3 hollow spheres sorted by size and size range were synthesized by a sub-atmospheric pressure infiltration technique. The resulting samples were tested in compression at strain rates ranging from 10~(-3) s~(-1) using a conventional load frame to 1720 s~(-1) using a Split Hopkinson Pressure-bar test apparatus. It is shown that the quasi-static compressive stress–strain curves exhibit distinct deformation events corresponding to initial failure of the foam at the critical resolved shear stress and subsequent failures and densification events until the foam is deformed to full density. The peak strength, plateau strength, and toughness of the foam increases with increasing hollow sphere wall thickness to diameter (t/D) ratio. Since t/D was found to increase with decreasing hollow sphere diameter, the foams produced with smaller spheres showed improved performance. The compressive properties did not show measurable strain rate dependence.
机译:金属基复合泡沫材料是有希望吸收能量的材料。然而,很少有研究检查空心球尺寸和泡沫微结构对所得泡沫的准静态和高应变速率特性的影响。采用亚大气压渗透技术,合成了按尺寸和尺寸范围分类的Al_2O_3空心球铝合金A380复合泡沫。使用传统的载荷框架,以10〜(-3)s〜(-1)的应变率,使用Split Hopkinson压力棒测试仪,以1720 s〜(-1)的应变速率对所得样品进行压缩测试。结果表明,准静态压缩应力-应变曲线表现出明显的形变事件,对应于在临界分辨剪切应力下泡沫的初始破坏,以及随后的破坏和致密化事件,直到泡沫变形至全密度为止。泡沫的峰值强度,平稳强度和韧性随中空球壁厚度与直径(t / D)比的增加而增加。由于发现t / D随空心球直径的减小而增加,所以用较小球体生产的泡沫表现出改善的性能。压缩性能未显示出可测量的应变率依赖性。

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