首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructures and room temperature fracture toughness of Nb/Nb_5Si_3 composites alloyed with W, Mo and W-Mo fabricated by spark plasma sintering
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Microstructures and room temperature fracture toughness of Nb/Nb_5Si_3 composites alloyed with W, Mo and W-Mo fabricated by spark plasma sintering

机译:火花等离子体烧结制备的钨,钼,钨钼钼合金化Nb / Nb_5Si_3复合材料的组织和室温断裂韧性

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摘要

Microstructures and room temperature fracture toughness of Nb/Nb_5Si_3 composites alloyed with W, Mo and W-Mo fabricated by spark plasma sintering were investigated. The microstructures were examined using scanning electron microscope (SEM). X-ray diffraction (XRD) was performed on the bulk specimens for identification of phases. The chemical species were analyzed using electron-probe micro-analysis (EPMA). Results indicated that the microstructures of Nb/Nb_5Si_3 composites alloyed with W or Mo is unaltered, including primary Nb and eutectic mixtures of Nb and Nb_5Si_3, and the coarse and fine eutectic mixtures. The W and Mo elements solid solution in Nb and Nb_5Si_3 phase are detected. But that alloyed with W and Mo together, The microstructures are change obviously, including Nb phase, the solid solubility phases of W and Mo atoms in Nb, and the solid solubility phases of Nb atoms in W are also found, but the solid solubility phenomenon of Nb_5Si_3 phases is not detected. The microhardness of Nb and Nb_5Si_3 phases increases obviously because of solid solution strengthening. The Nb/ Nb_5Si_3 composite alloyed with W and Mo together hashing high fracture toughness is attributable to the big eutectic Nb and interface of eutectic phases, which can bear large deformation to absorb the crack energy and form the dec-ohesion between eutectic phases.
机译:研究了火花等离子体烧结制备的W,Mo和W-Mo合金化的Nb / Nb_5Si_3复合材料的组织和室温断裂韧性。使用扫描电子显微镜(SEM)检查微观结构。 X射线衍射(XRD)在大块样品上进行了相鉴定。使用电子探针微分析(EPMA)分析化学物质。结果表明,与W或Mo合金化的Nb / Nb_5Si_3复合材料的微观结构没有改变,包括Nb和Nb_5Si_3的初生Nb和共晶混合物,以及粗和细共晶混合物。检测到Nb和Nb_5Si_3相中的W和Mo元素固溶体。但是与钨和钼一起合金化后,其微观结构发生了明显变化,包括Nb相,Nb中W和Mo原子的固溶相,以及W中Nb原子的固溶相,但出现了固溶现象。未检测到Nb_5Si_3个相位。 Nb和Nb_5Si_3相的显微硬度由于固溶强化而明显增加。与钨和钼一起合金化的Nb / Nb_5Si_3复合材料具有很高的断裂韧性,这归因于大的共晶Nb和共晶相的界面,可承受大的变形以吸收裂纹能并形成共晶相之间的破坏。

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