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Effect of Yttria Mould Coating on the Investment Casting of AZ91D-1 wt% CaO Magnesium Alloy

机译:Yttria模具涂层对AZ91d-1wt%CaO镁合金投资铸造的影响

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摘要

The main objective of the present research is to develop a technique to inhibit the mould-metal interaction in the investment casting of magnesium (Mg) alloys. The use of yttria layers (Y2O3) as an interface mould coating to manufacture thin-walled samples of AZ91D-1 wt% CaO alloy was investigated and the reaction mechanisms were exploited. Additive manufacturing models with thin walls (2 mm thick) were designed to study the casting behaviour of the melt in ceramic moulds (plaster), for both coated and uncoated models. Additionally, the optimal processing parameters were taken into account using a vacuum induction furnace under a flowing argon atmosphere to prevent the ignition of the molten Mg. Regarding uncoated models tests, a considerable content of reaction products was revealed, resulting in large defects all over the castings. In these samples, new phases have been formed around the surface and the matrix due to the mould-metal reactions. On the other hand, the interaction between the liquid metal and the plaster was prevented in those ceramic moulds where yttria was used as an interface protective refractory, which led to a cleaner surface and a more uniform microstructure, improving the effectiveness of this process in the manufacture of Mg structures.
机译:本研究的主要目的是开发一种技术,以抑制镁(Mg)合金投资铸造中的模具金属相互作用。研究了使用YtTria层(Y2O3)作为制造AZ91D-1wt%CaO合金的薄壁样品的界面模具涂层,利用反应机制。薄壁(2mm厚)的添加剂制造模型被设计为研究陶瓷模具(石膏)中熔体的铸造行为,适用于涂层和未涂覆的模型。另外,在流动的氩气氛下使用真空感应炉考虑最佳处理参数,以防止熔融Mg的点火。关于未涂层的模型测试,揭示了相当大的反应产物含量,导致铸件上的大缺陷。在这些样品中,由于模具金属反应,在表面和基质周围形成了新相。另一方面,在那些陶瓷模具中防止了液态金属和石膏之间的相互作用,其中亚钇用作界面保护耐火材料,这导致了更清洁的表面和更均匀的微观结构,提高了该过程的有效性MG结构的制造。

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