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Potential and limitations of microanalysis SEM techniques to characterize borides in brazed Ni-based superalloys

机译:显微分析SEM技术表征钎焊镍基高温合金中硼化物的潜力和局限性

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Brazed Ni-based superalloys containing complex phases of different Boron contents remain difficult to characterize at the micrometer scale. Indeed Boron is a light element difficult to measure precisely. The state-of-the-art microanalysis systems have been tested on a single crystal MC2 based metal brazed with BNi-2 alloy to identify boride precipitates. Effort has been made to evaluate the accuracy in Boron quantitation. Energy-dispersive and wavelength-dispersive X-ray spectroscopy attached to a Scanning Electron Microscope have first been used to determine the elemental composition of Boron-free phases, and then applied to various types of borides. Results have been compared to the ones obtained using a dedicated electron probe microanalysis, considered here as the reference technique. The most accurate method to quantify Boron using EDS is definitely by composition difference. A precision of 5 at.% could be achieved with optimized data acquisition and post-processing schemes. Attempts that aimed at directly quantifying Boron with various standards using EDS or coupled EDS/WDS gave less accurate results. Ultimately, Electron Backscatter Diffraction combined with localized EDS analysis has proved invaluable in conclusively identifying micrometer sized boride precipitates; thus further improving the characterization of brazed Ni-based superalloys. (C) 2014 Elsevier Inc. All rights reserved.
机译:含有不同硼含量的复杂相的钎焊镍基高温合金仍然难以在微米级表征。的确,硼是难以精确测量的轻元素。先进的微分析系统已在钎焊BNi-2合金的单晶MC2基金属上进行测试,以鉴定硼化物沉淀物。已努力评估硼定量的准确性。附着在扫描电子显微镜上的能量色散和波长色散X射线光谱仪已首先用于确定无硼相的元素组成,然后应用于各种类型的硼化物。将结果与使用专用电子探针微分析获得的结果进行了比较,此处将其视为参考技术。使用EDS定量硼的最准确方法肯定是通过成分差异。通过优化的数据采集和后处理方案,可以达到5 at。%的精度。尝试使用EDS或耦合的EDS / WDS用各种标准物直接定量测定硼的尝试得出的准确度较低。最终,电子背散射衍射与局部EDS分析相结合已被证明对于最终确定微米级的硼化物沉淀物具有不可估量的价值。从而进一步改善了钎焊镍基高温合金的特性。 (C)2014 Elsevier Inc.保留所有权利。

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