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首页> 外文期刊>Intermetallics >Microstructure, microhardness and oxidation behavior of Mo-Si-B alloys in the Mo-ss+Mo2B+Mo5SiB2 three phase region
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Microstructure, microhardness and oxidation behavior of Mo-Si-B alloys in the Mo-ss+Mo2B+Mo5SiB2 three phase region

机译:Mo-Si-B合金在MO-SS + MO2B + MO5SIB2三相区域中MO-Si-B合金的微观结构,显微硬度和氧化行为

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A series of Mo-Si-B alloys in the Mo-ss+T-2 (Mo5SiB2)+Mo2B three phase region were designed to examine the effect of the lower Si solubility limit in the Mo ss phase on the microstructure, hardness and oxidation behavior. X-ray diffraction (XRD), Scanning Electron Microscopy (SEM), Vickers hardness tests and Electron Probe Microanalysis (EPMA) were carried out for the evaluation. The XRD results show an unusual lattice constant expansion for the Mo-ss that is consistent with B as an interstitial solute. SEM images establish the microstructure evolution during the annealing. The analysis of the indentations produced by the Vickers hardness tests demonstrate that the samples in the Mo-ss+ Mo2B + T-2 three phase region have about a 50% higher fracture toughness than comparable samples in Mo-ss + Mo3Si + T-2 three phase region due to the lower Si solubility in the Mo-ss phase. The thermogravimetric analysis (TGA) results show that the oxidation resistance is directly related to T-2 phase fraction in the microstructure. Alloys with a Mo-ss + Mo2B + T-2 microstructure exhibit a similar oxidation behavior to those with a Mo-ss + Mo3Si + T-2 microstructure when the T-2 phase fraction in the two alloys is similar. Mo-Si-B alloys in the Mo-ss + Mo2B + T-2 three phase region could achieve better mechanical properties than alloys in the Mo-ss + Mo3Si + T-2 three phase region and are attractive candidates for high temperature applications.
机译:设计了MO-SS + T-2(MO5SIB2)+ MO2B三相区域的一系列MO-Si-B合金,以检查MO SS相对微观结构,硬度和氧化的下部Si溶解度极限的效果行为。 X射线衍射(XRD),扫描电子显微镜(SEM),维氏硬度测试和电子探针微分析(EPMA)进行评估。 XRD结果显示了与B作为间质溶质一致的MO-SS的不寻常的晶格恒定扩展。 SEM图像在退火过程中建立微观结构演变。由维克斯硬度试验产生的压痕的分析表明,MO-SS + MO2B + T-2三相区域中的样品比MO-SS + MO3SI + T-2三个的可比较样品具有大约50%的裂缝韧性由于MO-SS相中较低的Si溶解度导致的相区域。热重分析(TGA)结果表明,抗氧化性与微观结构中的T-2相分数直接相关。当两种合金中的T-2相级分相似时,具有MO-SS + MO2B + T-2微结构的合金对具有MO-SS + MO3SI + T-2微观结构的类似氧化行为。 MO-SS + MO2B + T-2三相区域中的MO-Si-B合金可以在MO-SS + MO3SI + T-2三相区域中的合金获得更好的机械性能,并且具有高温应用的吸引力。

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