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Evaluation of Y2O3 as front layer of ceramic crucibles for vaccum induction melting of tial based alloys

机译:Y2O3作为陶瓷坩埚用于真空感应熔炼基合金合金的前层的评估

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摘要

During the last decades titanium alloys were found to be valuable engineering materials for many different applications. Formerly used in critical applications like aerospace, aeronautic and military equipment, where the factor cost is not relevant, titanium alloys are finding now new and different markets. However, the development of such new markets will depend on an effective cost reduction of titanium parts, in order to achieve a selling cost suitable with its application in consumer goods. A possible solution to decrease production costs might be the use of traditional casting techniques to produce near net shape functional parts. During the last years, the authors have developed extensive research work on this field, and a new technique both for melting and moulding, using ceramic multi-layered crucibles and investment casting shells was developed. This paper presents some of the results obtained during that research work: Ti-48Al alloy were melted and cooled inside CaO, MgO and Y2O3 stabilized ZrO2 crucibles with inside layer of Y2O3. The chemical composition, hardness and microstructure at the metal-crucible interface, studied by secondary ion mass spectrometry, SEM/EDS and XRS are presented. On a second step, the same alloy was melted on the same crucibles, and poured into graphite moulds, and the crucibles wall was characterized by SEM/EDS and XRS.
机译:在过去的几十年中,钛合金被发现是用于许多不同应用的有价值的工程材料。钛合金以前曾用于关键应用,例如航空航天,航空和军事设备,在这些应用中,因素成本并不重要,因此钛合金现在发现了新的且不同的市场。然而,这种新市场的发展将取决于有效地降低钛零件的成本,以实现适合其在消费品中应用的销售成本。降低生产成本的一种可能解决方案可能是使用传统的铸造技术来生产接近最终形状的功能部件。在过去的几年中,作者在这一领域进行了广泛的研究工作,并且开发了一种新的熔化和模制技术,该技术使用了陶瓷多层坩埚和熔模铸造壳。本文介绍了在该研究工作中获得的一些结果:将Ti-48Al合金在带有Y2O3内层的CaO,MgO和Y2O3稳定的ZrO2坩埚内部进行熔融和冷却。介绍了通过二次离子质谱,SEM / EDS和XRS研究的金属坩埚界面的化学成分,硬度和微观结构。第二步,将相同的合金在相同的坩埚上熔化,然后倒入石墨模具中,并用SEM / EDS和XRS对坩埚壁进行表征。

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