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Deformation Micromechanisms of a Ti-based Metallic Glass Composite with Excellent Mechanical Properties

机译:具有优异机械性能的钛基金属玻璃复合材料的形变微观机理

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摘要

A Ti-based metallic glass composite with composition of Ti48Zr20Nb12Cu5Be15 exhibits good ambient plasticity in tensile and compressive loading. The macro and micro mechanisms during deformation have been investigated systematically. Obvious asymmetry between the tensile and compressive properties of the composite has been observed, indicating amorphous matrix effect on the metallic glass composite. The micro fracture mechanism of dendrites in compression can also be attributed to two mechanisms: shear induced fracture in major and tension induced fracture in local, revealing a constraint of matrix induced complex stress state in composite. Pile-ups of dislocations in dendrites cause work-hardening of composite, and the impedance of dendrites to shear bands is responsible for the improvement of plastic strain.
机译:组成为Ti48Zr20Nb12Cu5Be15的Ti基金属玻璃复合材料在拉伸和压缩载荷下均表现出良好的环境可塑性。系统地研究了变形过程中的宏观和微观机理。已经观察到复合材料的拉伸和压缩性能之间明显的不对称性,表明非晶态基质对金属玻璃复合材料的影响。枝晶在压缩过程中的微观断裂机理也可以归结为两种机理:主剪切剪切断裂和局部拉伸断裂,揭示了复合材料中基体诱导的复杂应力状态的约束。树枝状晶体中位错的堆积会导致复合材料的工作硬化,而树枝状晶体对剪切带的阻抗负责改善塑性应变。

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