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Comparative study of bulk metallic glass composites with high-volume-fractioned dendritic and spherical b. c. c. phase precipitates

机译:高体积分数枝晶和球形大块金属玻璃复合材料的比较研究b。 C。 C。相沉淀

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A dendritic β-phase reinforced bulk metallic glass (BMG) composite named as D2 was prepared by rapid quenching of a homogenous Zr60Ti14.67Nb5.33Cu5.56Ni4.44Be10 melt, and characterized by means of X-ray diffraction (XRD), scanning electron microscopy (SEM) observation and room-temperature compression test. The microstructure and mechanical properties were compared with those of the spherical β-phase reinforced composite named as composite S2. It was found that the composite D2 contains β-phase dendrites up to 56% in volume-fraction, and exhibits a ductile compressive behavior with plastic strain of 12.7%. As the high-volume-fractioned β-phase dendrites transferred to coarse spherical particles of about 20 μm in diameter in the composite S2, a much improved plastic strain up to 20.4% can be achieved. Micrographs of the fractured samples reveal different interaction modes of the propagating shear bands with the dendritic and spherical β phase inclusions, resulting in different shear strains in the composite samples. The matrix of composite S2 undergoes a significantly larger shear strain than that of the composite D2 before ultimate failure, which is thought to be mainly responsible for the greatly increased global plastic strain of the S2 relative to D2.
机译:通过均质的Zr60Ti14.67Nb5.33Cu5.56Ni4.44Be10熔体的快速淬火,制备了名为D2的树枝状β相增强块状金属玻璃(BMG)复合材料,并通过X射线衍射(XRD),扫描电子进行了表征显微镜(SEM)观察和室温压缩测试。比较了球形β相增强复合材料S2的组织和力学性能。发现复合材料D2包含体积分数高达56%的β相树枝状晶体,并且表现出延展的压缩行为,塑性应变为12.7%。由于高体积分数的β相树枝状结晶转移到复合材料S2中直径约20μm的粗球形颗粒上,因此可以实现高达20.4%的大大改善的塑性应变。断裂样品的显微照片显示,传播的剪切带与树枝状和球形β相夹杂物的相互作用方式不同,从而导致复合样品中的剪切应变不同。复合材料S2的基体承受的剪切应变要比复合材料D2的剪切应变大得多,这被认为是造成S2相对于D2的整体塑性应变大大增加的主要原因。

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