首页> 外文期刊>Journal of nanoscience and nanotechnology >Preparation of Y2O3 Coated CaO Ceramic Cores with Anti-Hydration Performance and High-Interface Stability Against Interface Reaction of Ti-6Al-4V Alloys
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Preparation of Y2O3 Coated CaO Ceramic Cores with Anti-Hydration Performance and High-Interface Stability Against Interface Reaction of Ti-6Al-4V Alloys

机译:用抗水合性能和抗水合性能的抗水化性能和抗液相色谱 - 4V合金界面反应的制备及高界面稳定性

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摘要

In this study, we describe a novel method for preparing Y2O3 @ CaO ceramic cores with anti-hydration performance and high-interface stability against interface reaction of Ti-6Al-4V alloys. The effect of Y2O3 coating on microstructure, mechanical, anti-hydration properties of ceramic cores and interface reaction with Ti-6Al-4V alloys was studied. The results show that the surface charge of Y2O3 and CaO are opposite at the pH value of 13, which might result in an electrostatic force and become the main driving force of Y2O3 particles absorb on the surface of CaO particles. The Y2O3 coating improved the anti-hydration properties of the CaO-based ceramic cores after sintering at 1450 degrees C. Meanwhile, the flexural strength improved from 11.2 to 18.8 MPa. At last, the interaction between the ceramic cores and Ti-6Al-4V metal were studied by centrifugal investment casting. Y2O3 coating can effectively reduce the interface reaction and the thickness of the interaction layer in the casting was less than 10 mu m. The results suggest that the Y2O3 @ CaO ceramic with anti-hydration performance provide excellent mechanical and high-interface stability against interface reaction of Ti-6Al-4V alloys.
机译:在该研究中,我们描述了一种用抗水化性能和Ti-6Al-4V合金的界面反应的抗水化性能和高界面稳定性制备Y2O3 ~~陶瓷芯的新方法。研究了Y2O3涂层对陶瓷芯和Ti-6AL-4V合金界面反应的微观结构,机械,抗水化性能的影响。结果表明,Y2O3和CAO的表面电荷在pH值为13的相对,这可能导致静电力并成为Y2O3颗粒的主驱动力在CaO颗粒表面上吸收。 Y2O3涂层在烧结后在1450℃下烧结后改善了CaO基陶瓷芯的抗水化性能。同时,弯曲强度从11.2-18.8MPa改善。最后,通过离心投资铸造研究了陶瓷芯和Ti-6Al-4V金属之间的相互作用。 Y2O3涂层可以有效地降低界面反应,并且铸件中的相互作用层的厚度小于10μm。结果表明,具有抗水合性能的Y2O3 @ C​​ao陶瓷提供了优异的机械和高界面稳定性,免于Ti-6Al-4V合金的界面反应。

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