材料科学
复合材料
复合数
剪切(地质)
抗压强度
非晶态金属
钛
相(物质)
合金
冶金
化学
有机化学
作者
Yu Sun,H. F. Zhang,A. M. Wang,Huameng Fu,Zheng Hu,Cuié Wen,Peter Hodgson
摘要
We report an Mg-based metallic glass/titanium interpenetrating phase composite in which constituent phases form a homogeneously interconnected network. The porous titanium constrains shear bands propagation thoroughly and promotes shear bands branching and intersection subsequently. The homogeneous phase distribution promotes regularly distributed local shear deformation and leads to a uniform deformation for the composites. Moreover, the interpenetrating phase structure introduces a mutual-reinforcement between metallic glass and titanium. Therefore, the composite exhibits excellent mechanical performance with compressive fracture strength of 1783 MPa and fracture strain of 31%.
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