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Effect of melting pressure and superheating on chemical composition and contamination of yttria-coated ceramic crucible induction melted titanium alloys

机译:熔体压力和过热度对氧化钇包覆陶瓷坩埚感应熔炼钛合金化学成分和污染的影响

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摘要

When melting reactive alloys, chemical composition and alloy homogeneity strongly depend on processing conditions, especially if melting is performed in ceramic crucibles. In this case, the nature of crucible materials, the melting stock composition and the melting parameters (atmosphere, pressure, superheating time and temperature) are critical processing variables. In this work, a Ti - 48Al alloy was induction melted in a ZrO _2SiO _2-based crucible with Y _2O _3 inner layer using different superheating temperatures (1600 and 1650 °C) and times (0,60 and 90 s) and poured into a graphite mould. The influence of different temperature/time combinations in the alloy composition, Al loss by evaporation and metal/crucible interaction was studied for different melting pressures. Al loss was found to increase significantly for melting pressures below 10 ~(-2) mbar and increases with increasing superheating time and temperature. The experimental results concerning to Al loss are in agreement with theoretical (and experimentally validated) models available for induction skull melting of TiAl. Metal/crucible interaction directly increased with melting pressure, superheating time and temperature, leading to alloy contamination with Y and O. For the experimental set-up used in this work, optimal temperature/superheating time/pressure combinations that lead to acceptable alloy composition have been identified.
机译:在熔化反应性合金时,化学成分和合金均匀性在很大程度上取决于加工条件,尤其是在陶瓷坩埚中进行熔化时。在这种情况下,坩埚材料的性质,熔融物料的组成和熔融参数(大气压,压力,过热时间和温度)是关键的加工变量。在这项工作中,使用不同的过热温度(1600和1650°C)和时间(0,60和90 s)在带有Y _2O _3内层的ZrO _2SiO _2基坩埚中感应熔化Ti-48Al合金,并将其倒入石墨模具。研究了不同熔体压力下不同温度/时间组合对合金成分,铝蒸发损失以及金属/坩埚相互作用的影响。发现铝的损失对于低于10〜(-2)mbar的熔融压力显着增加,并且随着过热时间和温度的增加而增加。有关铝损失的实验结果与可用于TiAl诱导颅骨融化的理论模型(并经过实验验证)一致。金属/坩埚的相互作用随熔化压力,过热时间和温度的增加而直接增加,导致合金被Y和O污染。对于这项工作中使用的实验装置,最佳的温度/过热时间/压力组合可导致可接受的合金成分被确定。

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