微观结构
复合数
材料科学
钛合金
3d打印
复合材料
合金
工程类
生物医学工程
作者
Zhijie Li,Zhaolong Ma,Xingwang Cheng,Hongnian Cai
标识
DOI:10.1016/j.jmrt.2024.06.028
摘要
The microstructures, shape memory properties, and mechanical properties of 3D-printed ZrCu-Ti6Al4V laminated composites were investigated in this study. The microstructure of the laminated composite effectively combines the characteristics of two alloys. The shape memory effect and mechanical properties of the laminated composite are affected by the thickness of the layer. The results reveal that higher austenite transformation temperature than ZrCu with total recovery strain close to ZrCu, and a compression strain exceeding 21% can be achieved by 3D-printed ZrCu-Ti6Al4V laminated composite with thickness of 0.25mm. Additionally, the composite with thickness of 0.5mm demonstrates excellent fracture toughness values of 44.30MPa·m1/2, as well as high yield strength and flow stress values reaching 1818MPa and 2194MPa respectively at a strain rate of 3500s-1. This study highlights that incorporating Ti6Al4V layers into ZrCu through 3D-printing can significantly enhance mechanical properties while maintaining favorable shape memory properties, thus combining the advantages of functional and structural materials.
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