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Influence of surface roughness and melt superheat on HDA process to form a tritium permeation barrier on RAFM steel

机译:表面粗糙度和熔体过热对HDA工艺形成RAFM钢a渗透阻挡层的影响

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The most optimal candidate material for fabrication of Test Blanket Module (TBM) in the installation of ITER and future fusion reactors is Reduced Activation Ferritic Martensitic (RAFM) steel, yet one of the major challenges that need to be addressed with RAFM is minimizing the loss of tritium in a reactor environment through the formation of tritium permeation barrier. One of the most promising methods for the tritium permeation barrier is through duplex coating with Al2O3/Fe-Al which is well known to reduce tritium permeation rate by several orders of magnitude. The present work aims to form an alumina layer on RAFM steel by a two-step method, which consists of (i) Hot Dip Aluminizing (HDA) and (ii) conversion of Al into alumina by a subsequent oxidation process. In addition, the influence of surface roughness of the substrate, superheat condition of the Al alloy melt and its composition on microstructural properties of coating before and after oxidation were investigated using OM, SEM-EDS, XRD, indentation micro hardness and scratch test. The experimental results confirmed the formation of alumina layer on RAFM steel after the HDA and oxidation process. Moreover, the surface roughness of the substrate, melt superheat of Al alloy and its composition are found to have a significant influence on the microstructure, thickness, micro-hardness, nature of intermetallic compounds formed and adhesion strength of the coating. (C) 2015 Elsevier B.V. All rights reserved.
机译:在ITER和未来的聚变反应堆中安装测试毯模块(TBM)的最理想的候选材料是活化铁素体马氏体(RAFM)钢,但是RAFM需要解决的主要挑战之一是将损失最小化。反应堆环境中barrier的形成是通过barrier渗透屏障的形成。 promising渗透屏障的最有前途的方法之一是通过用Al2O3 / Fe-Al进行双涂层,众所周知,这可以将tri的渗透速率降低几个数量级。本工作旨在通过两步法在RAFM钢上形成氧化铝层,该方法包括(i)热浸镀铝(HDA)和(ii)通过后续的氧化工艺将Al转化为氧化铝。此外,使用OM,SEM-EDS,XRD,压痕显微硬度和划痕试验研究了基材表面粗糙度,铝合金熔体的过热条件及其组成对氧化前后的涂层组织结构的影响。实验结果证实了在HDA和氧化过程之后,RAFM钢上形成了氧化铝层。此外,发现基材的表面粗糙度,铝合金的熔融过热及其组成对显微组织,厚度,显微硬度,形成的金属间化合物的性质和涂层的粘附强度具有显着影响。 (C)2015 Elsevier B.V.保留所有权利。

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