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Interaction mechanism between niobium-silicide-based alloy melt and Y2O3 refractory crucible in vacuum induction melting process

机译:真空感应熔炼过程中铌硅化物基合金熔体与Y2O3耐火坩埚的相互作用机理

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The Y2O3 crucibles were introduced in the study as an alternative to the traditional ceramic ones in vacuum induction melting of multi-component Nb-16Si-22Ti-2Al-2Hf-17Cr (at.%) alloys, to reveal the possible interactions between the alloy melt and the refractory crucible. Multiple melting time lengths and two cooling schemes were designed and used for the experiments. The chemical composition and microstructure of the tested alloy and the melt-crucible interaction were investigated and evaluated. In the experiments, Y2O3 crucible displays good physical-chemical compatibility. The results indicate that the increment of O element in the as-cast ingot is 0.03at.%-0.04at.% (72-97 ppm) and the increment of Y element is very insignificant. The key features of the alloy melt interacting with Y2O3 ceramics are analyzed and concluded in the paper. As a result of the dissolution reaction xY2O3 (in molten alloy) + (1-x)HfO2 (impurity) →Hf1-xY2xO2-x, a continuous double-layer solid film consisted of HfO2 solid solution (~2 μm) and pure HfO2 (~5 μm) is formed on the surface of the test ingot after cooled down in the crucible. The experimental results show that the Y2O3 crucible is applicable to the vacuum induction melting of Nb-Si based alloys.
机译:在研究中引入了Y2O3坩埚作为传统陶瓷坩埚的替代品,用于多组分Nb-16Si-22Ti-2Al-2Hf-17Cr(at。%)合金的真空感应熔炼,以揭示合金之间可能存在的相互作用熔化和耐火坩埚。设计了多种熔化时间长度和两种冷却方案,并将其用于实验。研究和评估了被测合金的化学成分和微观结构以及熔体与坩埚的相互作用。在实验中,Y2O3坩埚显示出良好的物理化学相容性。结果表明,铸态铸锭中O元素的增量为0.03at。%-0.04at。%(72-97 ppm),而Y元素的增量非常微不足道。本文分析并总结了合金熔体与Y2O3陶瓷相互作用的关键特征。由于xY2O3(在熔融合金中)+(1-x)HfO2(杂质)→Hf1-xY2xO2-x的溶解反应的结果,由HfO2固溶体(〜2μm)和纯HfO2组成的连续双层固体膜在坩埚中冷却后,会在测试锭的表面形成约5μm(〜5μm)的粉末。实验结果表明,Y2O3坩埚适用于Nb-Si基合金的真空感应熔炼。

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