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首页> 外文期刊>Inorganic materials: applied research >Effect of Chemical Composition Variability on Phase Composition and Structure of Beta-Solidifying TiAl-Alloy in As-Cast Condition
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Effect of Chemical Composition Variability on Phase Composition and Structure of Beta-Solidifying TiAl-Alloy in As-Cast Condition

机译:铸态条件下化学成分变异性对β-固溶TiAl合金相组成和结构的影响

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摘要

The regularities of the effect of the variation in the chemical composition of the new Russian β‑solidifying TiAl-alloy (Ti–44.5 Al–2 V–1 Nb–2 Cr/1 Zr–(0–0.1) Gd, at %) within the chromium content from 1.5 to 2.5 at % (2.0–3.5 wt %) and zirconium from 0.5 to 1.5 at % (1.2–3.5 wt %), as well as the effect of gadolinium microalloying on the phase composition and the structure of ingots, have been studied. The ingots were obtained using double vacuum-arc remelting with the subsequent vacuum-induction melting and pouring of the melt into the steel chill mold at the melting-casting unit with a cold crucible. It is shown that 0.1 at % gadolinium microaddition results in a decrease in the average size of the macro grains from 3000 ± 500 μm to 400 ± 80 μm in the peripheral part of the ingots after the first remelting. It was found that the phase composition of TiAl-alloy compositions with Cr and Zr is represented by three main phases: γ-TiAl, α~(2)-Ti~(3)Al, and β-phase. The volume fraction of β-phase does not exceed 2–3% in ingots containing Zr, while it reaches 5–6% in ingots containing Cr. It was revealed that the microstructure of the ingots of all studied chemical compositions has a lamellar morphology. Sprouting of lamellar colonies through the grain boundaries was noted for ingots containing Zr.
机译:新型俄罗斯β凝固TiAl合金化学成分变化的影响规律(Ti–44.5 Al–2 V–1 V–1 Nb–2 Cr / 1 Zr–(0–0.1)Gd,以%为单位)铬含量从1.5至2.5 at%(2.0-3.5 wt%)和锆从0.5至1.5 at%(1.2-3.5 wt%),以及ado微合金化对相组成和铸锭结构的影响,已被研究。使用双真空电弧重熔,随后进行真空感应熔炼,并将熔体在具有冷坩埚的熔铸单元中倒入钢冷模具中,从而获得铸锭。结果表明,在首次重熔后,微量添加0.1 at%的g会导致铸锭外围宏观晶粒的平均尺寸从3000±500μm减小到400±80μm。发现具有Cr和Zr的TiAl合金组合物的相组成由三个主要相表示:γ-TiAl,α〜(2)-Ti〜(3)Al和β相。含Zr的铸锭中β相的体积分数不超过2-3%,而含Cr的铸锭中β相的体积分数不超过5%。揭示了所有研究的化学组成的铸锭的微观结构具有层状形态。注意到含有Zr的晶锭通过晶界发芽的层状菌落。

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