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首页> 外文期刊>Journal of Materials Research and Technology >Effect of Zr and Hf additions on microstructure and mechanical properties of Nb–Si based ultrahigh temperature alloys
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Effect of Zr and Hf additions on microstructure and mechanical properties of Nb–Si based ultrahigh temperature alloys

机译:Zr和HF添加对基于Nb-Si超高温度合金微观结构和力学性能的影响

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摘要

To improve the fracture toughness, and reduce density and cost of Nb–Si alloy, the influence of the substitution of Zr for Hf in Nb–16Si–16Ti–xZr–yHf (x?+?y?=?4) alloys is investigated in this study, and the microstructural evolution and mechanical properties, including fracture toughness and compressive properties are analyzed. The results show that the substitution of Zr for Hf in Nb–16Si–16Ti–xZr–yHf (x?+?y?=?4) alloys can refine the microstructure, and promote the formation of (Nb, X)5Si3/Nbss eutectic. The fracture toughnessKQvalue increases with the increase of Zr content, since the high Zr content alloys exhibits the low c/a ratio and fine microstructure. Moreover, the addition of 1~4?at.% Hf in Nb–16Si–16Ti–4Zr alloy has less influence on the mechanical properties. The substitution of Zr for Hf in Nb–16Si–16Ti–xZr–yHf (x?+?y?=?4) alloys can improve the fracture toughness of alloys, and the Zr element exhibits the low density and cost compared with Hf element, which indicates that Zr is a promising alloying element.
机译:为了提高Nb-Si合金的裂缝韧性,降低Nb-Si合金的密度和成本,研究了Nb-16Si-16Ti-xZr-YHF(X + +γ=Δ=Δ= 4)合金中HF的Zr的影响在该研究中,分析了微观结构演化和机械性能,包括断裂韧性和压缩性能。结果表明,在Nb-16si-16ti-xzr-yhf(x≤+Δy≤x =Δ=Δ= 4)合金中的Hf替代Zr,可以优化微观结构,并促进(Nb,x)5si3 / nbs的形成共晶。由于高Zr含量合金显示出低C / A比率和微观结构,因此随着Zr含量的增加而增加,骨折韧度kqValue增加。此外,添加1〜4〜4.在NB-16SI-16TI-4ZR合金中的%HF对机械性能影响较小。在Nb-16Si-16Ti-XZR-YHF(x≤+y≤x≤4)合金中的Hf替代HF(x≤α=Δ= 4)合金可以改善合金的断裂韧性,与HF元素相比,Zr元素表现出低密度和成本,表明Zr是一个有希望的合金元素。

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