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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >The Influence of ZrO2 Concentration in an Yttria-Based Face Coat for Investment Casting a Ti-45Al-2Mn-2Nb-0.2TiB Alloy Using a Sessile Drop Method
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The Influence of ZrO2 Concentration in an Yttria-Based Face Coat for Investment Casting a Ti-45Al-2Mn-2Nb-0.2TiB Alloy Using a Sessile Drop Method

机译:基于滴滴法熔铸铸造Ti-45Al-2Mn-2Nb-0.2TiB合金的氧化钇基面层中ZrO2浓度的影响

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Investment casting is widely used to cast near-net shape components, reducing material waste and process cost. Due to the high reactivity of titanium and its alloys, in order to reduce the interaction between the mold and molten titanium, very costly materials are used in the mold face coat. In order to reduce the material cost while maintaining the chemical inertness of the face coat, ZrO2 was added into an yttria-based face coat in different concentrations in this study. The face coat properties of the different systems were analyzed using dilatometry and XRD. The chemical inertness of the different face coat systems were tested using a sessile drop test using a Ti-45Al-2Mn-2Nb-0.2TiB alloy, and the interactions between the face coat and the alloy were analyzed by the interfacial microstructures, contact angle, and hardness changes. The results showed that small amounts of ZrO2 can be added into yttria without changing the chemical inertness of the face coat. High amounts of ZrO2 in the face coat can interact with TiAl alloy to form different interaction products. Meanwhile, both Y2O3 and ZrO2 filler materials were observed to dissolve in molten TiAl during the sessile drop test. (C) The Minerals, Metals & Materials Society and ASM International 2014
机译:熔模铸造广泛用于铸造近净形零件,从而减少了材料浪费和工艺成本。由于钛及其合金的高反应性,为了减少模具与熔融钛之间的相互作用,在模具表面涂层中使用了非常昂贵的材料。为了降低材料成本,同时保持面层的化学惰性,在本研究中,将ZrO2以不同的浓度添加到氧化钇基面层中。使用膨胀法和XRD分析了不同系统的面漆性能。使用Ti-45Al-2Mn-2Nb-0.2TiB合金进行无滴落测试,测试了不同表面涂层系统的化学惰性,并通过界面微观结构,接触角,和硬度变化。结果表明,可以将少量的ZrO2添加到氧化钇中,而不会改变表面涂层的化学惰性。面涂层中大量的ZrO2可以与TiAl合金相互作用而形成不同的相互作用产物。同时,在固着试验中观察到Y2O3和ZrO2填充材料均溶解在熔融的TiAl中。 (C)矿物,金属和材料学会和ASM International 2014

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