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Alloying and Hardness of Eutectics with Nbss and Nb5Si3 in Nb-silicide Based Alloys

机译:NBSS和NB5SI3在NB-硅化物基合金中的合金和硬度

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摘要

In Nb-silicide based alloys, eutectics can form that contain the Nbss and Nb5Si3 phases. The Nb5Si3 can be rich or poor in Ti, the Nb can be substituted with other transition and refractory metals, and the Si can be substituted with simple metal and metalloid elements. For the production of directionally solidified in situ composites of multi-element Nb-silicide based alloys, data about eutectics with Nbss and Nb5Si3 is essential. In this paper, the alloying behaviour of eutectics observed in Nb-silicide based alloys was studied using the parameters ΔHmix, ΔSmix, VEC (valence electron concentration), δ (related to atomic size), Δχ (related to electronegativity), and Ω (= Tm ΔSmix/|ΔHmix|). The values of these parameters were in the ranges −41.9 < ΔHmix <−25.5 kJ/mol, 4.7 < ΔSmix < 15 J/molK, 4.33 < VEC < 4.89, 6.23 < δ < 9.44, 0.38 < Ω < 1.35, and 0.118 < Δχ < 0.248, with a gap in Δχ values between 0.164 and 0.181. Correlations between ΔSmix, Ω, ΔSmix, and VEC were found for all of the eutectics. The correlation between ΔHmix and δ for the eutectics was the same as that of the Nbss, with more negative ΔHmix for the former. The δ versus Δχ map separated the Ti-rich eutectics from the Ti-poor eutectics, with a gap in Δχ values between 0.164 and 0.181, which is within the Δχ gap of the Nbss. Eutectics were separated according to alloying additions in the Δχ versus VEC, Δχ versus , δ versus , and VEC versus maps, where = Al + Ge + Si + Sn. Convergence of data in maps occurred at δ ≈ 9.25, VEC ≈ 4.35, Δχ in the range ≈ 0.155 to 0.162, and in the range ≈ 21.6 at.% to ≈ 24.3 at.%. The convergence of data also indicated that the minimum concentration of Ti and maximum concentrations of Al and Si in the eutectic were about 8.7 at.% Ti, 6.3 at.% Al, and 21.6 at.% Si, respectively, and that the minimum concentration of Si in the eutectic was in the range 8 < Si < 10 at.%.
机译:在基于Nb-硅化物的合金中,含有NBSS和NB5SI3相的共肠。 Nb5Si3在Ti中可以富含或差,Nb可以用其他过渡和耐火金属代替,并且Si可以用简单的金属和金属元素代替。为了在原位凝固的基于多元素Nb-硅化物基合金的方向上凝固,具有NBSS和NB5SI3的关于Eutectics的数据至关重要。在本文中,共晶的合金化行为在硅化铌基合金观察到使用该参数ΔHmix,ΔSmix,VEC(价电子浓度),δ(有关原子尺寸),Δχ(与电负性)和Ω(进行了研究=TmΔsmix/ |Δhmix|)。这些参数的值在范围-41.9 <Δhmix<-25.5kJ / mol,4.7 <Δsmix<15J / molk,4.33 ,δ与,δ与,与映射相比,分离了共肠,其中 = Al + Ge + Si + Sn。地图中的数据收敛在δ≈9.25,vec≈4.35,Δχ的范围内,在≈0.55-0.162,和的范围内为≈21.6at。%至。%。%。%。数据的收敛性也表明,共晶中的Ti和最大浓度的最小浓度和共晶中的最大浓度为约8.7。%Ti,6.3分钟,21.6分别为0.%Si,最小浓度共晶中的Si在8

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    Panos Tsakiropoulos;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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