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Morphology of sintered silicide coatings remelted by high frequency electron beam

机译:高频电子束重熔硅化烧结涂层的形貌

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摘要

Silicide coatings were prepared on Nb-based alloy Nb-10W by a fused slurry method. Such sintered silicide coatings have defects such as pores, cracks, and uneven top surfaces, which have negative influence on the high temperature oxidation resistance of the coatings. Electron beam remelting is considered one of the most convenient processes to reduce these disadvantages and improve coating oxidation resistance. The effect of high frequency electron beam irradiation on surface remelting and microstructural modification of silicide coatings was investigated in this study. Scanning electron microscopy, X-ray diffraction, and atomic force microscopy were used to characterize phase and morphology before and after EB surface treatment. The surface roughness of the silicide coatings was reduced by two orders of magnitude and the average grain size was reduced by about one order of magnitude after treatment. This resulted in improvement of the high-temperature oxidation resistance of the EB treated silicide coatings, which offered about 50. h protection under isothermal oxidation in air at 1700 °C.
机译:通过熔浆法在Nb基合金Nb-10W上制备了硅化物涂层。这种烧结的硅化物涂层具有诸如孔,裂纹和不平坦的顶表面的缺陷,其对涂层的高温抗氧化性具有负面影响。电子束重熔被认为是减少这些缺点并提高涂层抗氧化性的最方便的方法之一。本研究研究了高频电子束辐照对硅化物涂层表面重熔和微观结构改性的影响。扫描电子显微镜,X射线衍射和原子力显微镜用于表征EB表面处理之前和之后的相和形态。在处理之后,硅化物涂层的表面粗糙度减小了两个数量级,并且平均晶粒尺寸减小了大约一个数量级。这改善了EB处理的硅化物涂层的高温抗氧化性,在1700°C的空气中等温氧化下可提供约50 h的保护。

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