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Microstructure in a Ni_(60)Pd_(20)P_(17)B_3 bulk metallic glass compressively fractured at cryogenic temperature

机译:Ni_(60)Pd_(20)P_(17)B_3大块金属玻璃在低温下压缩断裂的显微组织

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In order to clarify relationship between plasticity and microstructure for a Ni_(60)Pd_(20)P_(17)B_3 bulk metallic glass (BMG) at cryogenic temperature, we investigated the microstructures of both the shear band and fracture surface for the BMG compressively fractured at room temperature (RT) and 77 K (liquid Nitrogen temperature) using transmission electron microscopy (TEM). HRTEM images from the BMG fractured at 77 K clearly reveal that there are nanocrystalline particles around both shear band and fracture surface, but not in undeformed region. The sizes of the particles fractured at 77 K are smaller than those fractured at RT. These particles ranged from 3 to 5 nm in size are thought to consist of an fcc palladium-nickel solid solution phase. The particles with smaller size and the ductile fcc phase may effectively restrain the propagation of shear bands, resulting in enhancement of plastic deformation at cryogenic temperature.
机译:为了阐明在低温下Ni_(60)Pd_(20)P_(17)B_3块状金属玻璃(BMG)的塑性与微观结构之间的关系,我们以压缩方式研究了BMG的剪切带和断裂表面的微观结构使用透射电子显微镜(TEM)在室温(RT)和77 K(液氮温度)下破裂。来自BMG在77 K断裂的HRTEM图像清楚地表明,在剪切带和断裂表面都存在纳米晶体颗粒,但在未变形区域则没有。在77 K下破裂的颗粒的尺寸小于在RT下破裂的颗粒的尺寸。这些尺寸在3-5nm范围内的颗粒被认为由fcc钯-镍固溶体相组成。具有较小尺寸和易延展fcc相的颗粒可有效抑制剪切带的传播,从而导致在低温下塑性变形增强。

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