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Slurry erosion induced surface nanocrystallization of bulk metallic glass

机译:浆料腐蚀引起的块状金属玻璃表面纳米晶化

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Microstructure evolution and phase transformation of metallic glasses (MGs) could occur under heating condition or mechanical deformation. The cross-section of as-cast Zr55Cu30Ni5Al10 MG rod was impacted by the solid particles when subjected to erosion in slurry flow. The surface microstructure was observed by XRD before and after slurry erosion. And the stress-driven de-vitrification increases with the increase of erosion time. A microstructure evolution layer with 1-2 mu m thickness was formed on the topmost eroded surface. And a short range atomic ordering prevails in the microstructure evolution layer with crystalline size around 2-3 nm embedded in the amorphous matrix. The XPS analysis reveals that most of the metal elements in the MG surface, except for Cu, were oxidized. And a composite layer with ZrO2 and Al2O3 phases were formed in the topmost surface after slurry erosion. The cooling rate during solidification of MG has a strong influence on the slurry erosion induced nanocrystallization. And a lower cooling rate favors the surface nanocrystallization because of lower activation energy and thermo-stability. Finally, the slurry erosion induced surface nanocrystallization and microstructure evolution result in surface hardening and strengthening. Moreover, the microstructure evolution mechanisms were discussed and it is related to the cooling rate of solidification and the impact-induced temperature rise, as well as the combined effects of the impact-induced plastic flow, inter-diffusion and oxidation of the metal elements. (C) 2018 Elsevier B.V. All rights reserved.
机译:金属玻璃(MGs)的微观结构演化和相变可能在加热条件或机械变形下发生。 Zr55Cu30Ni5Al10 MG铸棒的横截面在浆液流中受到侵蚀时会受到固体颗粒的影响。用XRD观察了浆液侵蚀前后的表面微观结构。并且应力驱动的失透性随着腐蚀时间的增加而增加。在最顶部的腐蚀表面上形成了厚度为1-2μm的微结构演化层。在微结构演化层中普遍存在短程原子有序排列,晶体尺寸嵌入在无定形基体中约为2-3 nm。 XPS分析表明,除Cu外,MG表面中的大多数金属元素都被氧化了。浆料侵蚀后,在最表面形成了具有ZrO2和Al2O3相的复合层。 MG固化过程中的冷却速率对浆液侵蚀诱导的纳米结晶有很大的影响。并且较低的冷却速率由于较低的活化能和热稳定性而有利于表面纳米晶化。最后,浆液侵蚀引起的表面纳米晶化和微观结构的演变导致表面硬化和强化。此外,还讨论了显微组织的演化机理,它与凝固的冷却速率和冲击引起的温度升高以及冲击引起的塑性流动,金属元素的相互扩散和氧化的综合作用有关。 (C)2018 Elsevier B.V.保留所有权利。

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