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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Characterization of as-deposited cold sprayed Cr-coating on Optimized ZIRLO (TM) claddings
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Characterization of as-deposited cold sprayed Cr-coating on Optimized ZIRLO (TM) claddings

机译:优化Zirlo(TM)包层上沉积冷喷涂Cr涂层的表征

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摘要

As-produced Cr-coated Optimized ZIRLO (TM) cladding material fabricated with the cold-spray (CS) deposition process is studied. Cross-sectional electron microscopy, nano-hardness profiling, transmission electron microscopy, transmission Kikuchi diffraction, and atom probe tomography (APT) were performed to investigate the nature of the CS Cr-coating/Optimized ZIRLO (TM) interface, the microstructure of the coating, and the effects of the deposition on the Zr-substrate microstructure. The former surface of the Zr-substrate was found to have a highly deformed nano-crystalline microstructure, the formation of which was attributed to dynamic recrystallization occurring during coating deposition. This microstructural change, evaluated with electron backscattered diffraction and nano-hardness profiling, appeared to be confined to a depth of a few microns. Through APT analysis, a 10-20 nm thick intermixed bonding region was observed at the interface between coating and substrate. The chemical composition of this region suggests that this layer originated from a highly localized shearing and heating of a thin volume of the outermost former surface of the substrate. The study of the intermixed bonding region's crystalline structure was performed with high resolution transmission electron microscopy and revealed a distorted hexagonal close-packed structure. (C) 2021 The Authors. Published by Elsevier B.V.
机译:研究了采用冷喷涂(CS)沉积工艺制备的铬涂层优化ZIRLO(TM)覆层材料。通过横截面电子显微镜、纳米硬度剖面、透射电子显微镜、透射菊池衍射和原子探针层析成像(APT)研究了CS-Cr涂层/优化ZIRLO(TM)界面的性质、涂层的微观结构以及沉积对Zr基底微观结构的影响。发现锆基片的前表面具有高度变形的纳米晶体微观结构,其形成归因于涂层沉积过程中发生的动态再结晶。通过电子背散射衍射和纳米硬度分析评估,这种微观结构变化似乎仅限于几微米的深度。通过APT分析,在涂层与基体的界面上观察到了一个10-20nm厚的混合键合区。该区域的化学成分表明,该层起源于基底最外层前表面的一薄层的高度局部剪切和加热。用高分辨率透射电子显微镜对混合键合区的晶体结构进行了研究,发现混合键合区的晶体结构为扭曲的六边形密排结构。(c)作者2021。由Elsevier B.V.出版。

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