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Effect of withdrawal rates on microstructures and room temperature fracture toughness in a directionally solidified Nb-Ti-Cr-Si based alloy

机译:定向凝固Nb-Ti-Cr-Si基合金的拉拔速率对组织和室温断裂韧性的影响

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摘要

Integrally directional solidification of an Nb-Ti-Cr-Si based ultrahigh temperature alloy is conducted with the use of special ceramic crucibles. The effect of withdrawal rates on microstructure and room temperature fracture toughness is investigated. The microstructure of arc-melted alloy is composed of primary niobium solid solution (Nbss), Nbss/(Nb,X)_5Si_3 eutectic and fine Nbss/Cr_2Nb eutectic colonies, and the directionally solidified microstructure is composed of primary Nbss, Nbss/(Nb,X)_5Si_3 eutectic cells and fine Nbss/Nb_2Si/Cr_2Nb colonies (here X represents Ti and Hf elements). The room temperature fracture toughness decreased with increase in the withdrawing rates. The room temperature fracture toughness of the directional solidification specimen with withdrawing rates 10 and 20 μm/s are higher than the arc-melted counterparts. The effects of withdrawing rates on the microstructure and room temperature fracture toughness are discussed based on the microstructural and compositional characters.
机译:Nb-Ti-Cr-Si基超高温合金的整体定向凝固是使用特殊的陶瓷坩埚进行的。研究了拉拔速率对组织和室温断裂韧性的影响。电弧熔合合金的显微组织由初生铌固溶体(Nbss),Nbss /(Nb,X)_5Si_3共晶和细Nbss / Cr_2Nb共晶菌落组成,定向凝固的显微组织由初生Nbss,Nbss /(Nb)组成,X)_5Si_3共晶细胞和精细的Nbss / Nb_2Si / Cr_2Nb菌落(此处X表示Ti和Hf元素)。室温断裂韧性随抽出率的增加而降低。抽出速率分别为10和20μm/ s的定向凝固试样的室温断裂韧性高于电弧熔化试样。根据组织和组成特点,讨论了回撤速率对组织和室温断裂韧性的影响。

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