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Effects of B addition on the microstructure and properties of Nb silicide based ultrahigh temperature alloys

机译:硼含量对Nb硅化物基超高温合金组织和性能的影响

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摘要

Four Nb silicide based ultrahigh temperature alloys with compositions of Nb-22Ti-16Si-5Cr-4Hf-3Al -xB (x = 0, 2, 5 and 10, respectively) (at%) were prepared by vacuum non-consumable arc melting. The effects of B content on the phase selection, microstructure, oxidation resistance at 1250 degrees C, room-temperature fracture toughness and microhardness of the alloys were investigated. The results showed that the microstructures of the four alloys were all comprised of primary silicide blocks, Nbss dendrites and eutectic colonies. However, the crystal structures or types of silicides and the amounts of constituent phases obviously varied with increase in B content in the alloys. The oxidation resistance of the alloys was significantly ameliorated by B addition. The room temperature fracture toughness of the alloys was improved with 2 at% B addition but degraded with 5 or 10 at% B addition. The microhardness of Nbss rose slightly with increase in B content in the alloys, while that of silicides was dependent on their crystal structures, types and concentrations of alloying elements. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过真空非消耗电弧熔化制备了四种具有Nb-22Ti-16Si-5Cr-4Hf-3Al -xB(分别为x = 0、2、5和10)(at%)的Nb硅化物基超高温合金。研究了硼含量对合金的相选择,显微组织,在1250℃下的抗氧化性,室温断裂韧性和显微硬度的影响。结果表明,四种合金的显微组织均由初级硅化物块,Nbss枝晶和共晶菌落组成。但是,随着合金中B含量的增加,硅化物的晶体结构或类型以及组成相的数量明显变化。硼的添加明显改善了合金的抗氧化性。添加2 at%的B可以提高合金的室温断裂韧性,但是添加5或10 at%的B可以降低合金的室温断裂韧性。 Nbss的显微硬度随合金中B含量的增加而略有提高,而硅化物的显微硬度则取决于其晶体结构,合金元素的类型和浓度。 (C)2014 Elsevier Ltd.保留所有权利。

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