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Microstructural studies of electrospark deposited aluminide coatings on 9Cr steels

机译:9Cr钢上电火花沉积铝化物涂层的显微组织研究

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摘要

Electrospark deposition (ESD) technique has been used to apply an iron aluminide coating on 9Cr reduced activation steel, which is a structural material for test blanket modules of fusion reactors. Phase identification and microstructural analysis of the aluminide coating along with the interface region were performed with the support of X-ray diffraction technique, optical microscopy, scanning electron microscopy and nanoindentation hardness measurements. Microstructural examination indicated prominent changes in the near interface microstructure of the steels processed by the ESD process. The substrate side of the coating/substrate interface consisted of a soft zone that is possibly of quasi-amorphous nature and of an M_(23)C_6 type carbide segregation rich area below this interface. The coating, however, showed extensive crack defects that need to be removed for reliably assessing its suitability as a barrier layer for blanket applications.
机译:电火花沉积(ESD)技术已用于在9Cr还原活化钢上施加铝化铁涂层,该材料是聚变反应堆测试毯模块的结构材料。在X射线衍射技术,光学显微镜,扫描电子显微镜和纳米压痕硬度测量的支持下,对铝化物涂层以及界面区域进行了相鉴定和显微结构分析。显微组织检查表明,通过ESD工艺处理的钢的近界面微观结构发生了显着变化。涂层/基体界面的基体侧由可能具有准非晶性质的软区和该界面下方的M_(23)C_6型碳化物偏析富集区组成。然而,该涂层显示出广泛的裂纹缺陷,需要对其进行去除以可靠地评估其作为橡皮布应用的阻挡层的适用性。

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