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Nanostructuring of NiAl-Mo eutectic alloys by selective phase dissolution

机译:NiAl-Mo共晶合金的选择性相溶纳米结构

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A technique for the electrochemical structuring of directionally solidified NiAl-Mo eutectic by selective phase dissolution is presented. Local matrix dissolution at 200 mV SHE in 1 M HCl of pH1 yielded the grid of Mo nanowires spanning along the central part of the sample. On the other hand, the dissolution of the fibrous minor phase while passivating the continuous NiAl matrix resulted in continuous nanopore arrays. Initially, mechanical polishing and electropolishing were employed to thin the samples. Etching time was optimized by plotting the etch time until hole formation as a function of initial sample thickness, along with plotting sample thickness versus etching time. As a next step, an investigation into the passivation behaviour of the NiAl was performed in order to determine the optimal potential for wire dissolution. A potential scan from 0 to 2500 mV SHE on a bulk sample of pure NiAl in an electrolyte of 0.1 M acetate buffer pH 6.0 indicated that a potential of 500 mV SHE, just below the breakdown potential would provide maximum driving force for wire dissolution process. Different parameters within the electrochemical system are varied in order to optimize the wire dissolution. The extent of wire dissolution is measured both quantitatively (total charge transfer) and qualitatively (optical and SEM imaging).
机译:提出了通过选择性相溶解对定向凝固的NiAl-Mo共晶进行电化学结构化的技术。在200 mV SHE中,在1 M HCl pH1中的局部基质溶解产生了沿样品中心部分延伸的Mo纳米线网格。另一方面,当钝化连续的NiAl基体时纤维次要相的溶解导致连续的纳米孔阵列。最初,采用机械抛光和电抛光来使样品变薄。通过绘制直到孔形成的蚀刻时间与初始样品厚度的函数关系曲线,以及绘制样品厚度与蚀刻时间的关系曲线,可以优化蚀刻时间。下一步,对NiAl的钝化行为进行了研究,以确定最佳的焊丝溶解潜能。在0.1 M醋酸盐缓冲液pH 6.0的电解质中,对大量纯NiAl样品进行从0到2500 mV SHE的电势扫描,结果表明,刚好低于击穿电势的500 mV SHE电势将为焊丝溶解过程提供最大驱动力。改变电化学系统内的不同参数以优化线溶解。导线溶解的程度既可以定量(总电荷转移)又可以定性(光学和SEM成像)进行测量。

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