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首页> 外文期刊>Materials >Morphology Evolution on the Fracture Surface and Fracture Mechanisms of Multiphase Nanostructured ZrCu-Base Alloys
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Morphology Evolution on the Fracture Surface and Fracture Mechanisms of Multiphase Nanostructured ZrCu-Base Alloys

机译:多相纳米ZrCu基合金的断裂表面形貌演变及断裂机理

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A multiphase nanostructured ZrCu-base bulk alloy which showed a unique microstructure consisting of sub-micrometer scale Zr 2 Cu solid solution, nano-sized twinned plate-like ZrCu martensite (ZrCu (M)), and retained ZrCu (B2) austenite was fabricated by copper mold casting. The observation of periodic morphology evolution on the fracture surface of the multiphase nanostructured ZrCu-base alloys has been reported, which suggested a fluctuant local stress intensity along the crack propagation. It is necessary to investigate the compressive deformation behavior and the fracture mechanism of the multiphase alloy and the relation to the unique microstructures. The results obtained in this study provide a better understanding of the deformation and fracture mechanisms of multiphase hybrid nanostructured ZrCu-based alloys and give guidance on how to improve the ductility/toughness of bulk ZrCu-based alloys.
机译:制备了一种多相纳米结构的ZrCu基体合金,该合金具有独特的微观结构,该结构由亚微米级的Zr 2 Cu固溶体,纳米尺寸的双板状ZrCu马氏体(ZrCu(M))和残留的ZrCu(B2)奥氏体组成通过铜模铸造。已经报道了在多相纳米结构的ZrCu基合金的断裂表面上观察到周期性形态演化的现象,这表明沿着裂纹扩展的局部应力强度是波动的。有必要研究多相合金的压缩变形行为和断裂机理,以及与独特的微观组织的关系。这项研究获得的结果更好地理解了多相杂化纳米结构ZrCu基合金的变形和断裂机理,并为如何提高块状ZrCu基合金的延展性/韧性提供了指导。

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