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首页> 外文期刊>International Journal Cast Metals Research >A study of refractories as crucible and mould materials for melting and casting γ-TiAl alloys
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A study of refractories as crucible and mould materials for melting and casting γ-TiAl alloys

机译:用作熔铸γ-TiAl合金的坩埚和铸模材料的耐火材料的研究

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摘要

An assessment has been made of the potential use of mullite (3A1{sub}20{sub}3.2Si0{sub}2), zirconia (ZrO{sub}2), alumina (Al{sub}20{sub}3) and yttria (Y{sub}20{sub}3) for making crucibles and ceramic moulds for γ-TiAl alloys. Small refractory crucibles have been made by slip casting or pressing techniques and used to melt a γ-TiAl (Ti-48at%Al-2at%Nb-2at% Mn) alloy in a carbon resistance furnace. The effects of different refractories, volume fractions of open porosity and melting time on interactions and microstructures have been established. The width of the interaction region versus the holding time at 1550 ℃ can be described by a linear law for the mullite crucible and by parabolic laws for the zirconia, alumina and yttria crucibles. Based on these small-scale tests, it can be concluded that mullite and zirconia are unsuitable as crucible and mould materials for melting and casting γ-TiAl alloys, whereas both pure alumina and yttria show promise.
机译:已对莫来石(3A1 {sub} 20 {sub} 3.2Si0 {sub} 2),氧化锆(ZrO {sub} 2),氧化铝(Al {sub} 20 {sub} 3)和铝的潜在用途进行了评估氧化钇(Y {sub} 20 {sub} 3)用于制造用于γ-TiAl合金的坩埚和陶瓷模具。小型耐火坩埚已通过注浆成型或压制技术制成,并用于在耐碳炉中熔化γ-TiAl(Ti-48at%Al-2at%Nb-2at%Mn)合金。已经建立了不同耐火材料,开孔孔隙率的体积分数和熔化时间对相互作用和微观结构的影响。莫来石坩埚的线性规律和氧化锆,氧化铝和氧化钇坩埚的抛物线规律可以描述相互作用区域的宽度与在1550℃下的保持时间的关系。根据这些小型试验,可以得出结论,莫来石和氧化锆不适合用作熔融和铸造γ-TiAl合金的坩埚和铸模材料,而纯氧化铝和氧化钇都显示出希望。

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