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Microstructure and Compressive Properties of In-Situ Martensite CuZr Phase Reinforced ZrCuNiAl Metallic Glass Matrix Composite

机译:原位马氏体CuZr相增强ZrCuNiAl金属玻璃基复合材料的组织和压缩性能

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摘要

In-situ micro-level martensite CuZr phase reinforced Zr_(50.5)Cu_(27.45)Ni_(13.05)Al_9 metallic glass matrix composite was synthesized by copper mold casting. Microstructure and compressive properties of the composite are investigated. The martensite CuZr phase possesses numerous coherent twin boundaries, and holds strong interfacial cohesion with the matrix. They both effectively induce the seeding and branching of shear bands during compression. The compressive properties of the composite are therefore improved. The fracture strength and plastic strain of composite with a diameter of 3 mm is up to 2190 MPa, 5.7% respectively.
机译:通过铜铸模合成了原位微细马氏体CuZr相增强Zr_(50.5)Cu_(27.45)Ni_(13.05)Al_9金属玻璃基复合材料。研究了复合材料的微观结构和压缩性能。马氏体CuZr相具有许多相干的孪生边界,并且与基体之间具有很强的界面内聚力。它们都在压缩过程中有效地引起剪切带的播种和分支。因此改善了复合材料的压缩性能。直径3 mm的复合材料的断裂强度和塑性应变分别高达2190 MPa和5.7%。

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