首页> 外文会议>China International Conference on High-Performance Ceramics >Influences of Calcination Ambiences on Phase Composition and high Temperature Oxidation Resistance Property of Ceramic Coatings on Ti-6Al-4V Alloy by Micro-plasma Oxidation
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Influences of Calcination Ambiences on Phase Composition and high Temperature Oxidation Resistance Property of Ceramic Coatings on Ti-6Al-4V Alloy by Micro-plasma Oxidation

机译:微等离子氧化对Ti-6Al-4V合金陶瓷涂层相结合和高温氧化性能的影响

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Compound ceramic coatings with the main crystalline of Al_2TiO_5 (as-coated samples) were prepared on Ti-6Al-4V alloy by pulsed bi-polar micro-plasma oxidation (MPO) in NaAlO_2 solution. The coated samples were calcined in Ar and air at 1000°C, respectively. The phase composition, morphology and element content of the coatings were investigated by XRD, SEM and XRF. The samples treated in Ar and the as-coated ones were calcined in air at 1000°C to study the oxidation resistance of the samples. The results showed that Al_2TiO_5 decomposed and transformed into corundum and rutile TiO_2 during the high temperature calcination. Al_2TiO_5 decomposed very quickly in air and the proportion of Al_2O_3 to TiO_2 was 44:55 after a complete decomposition. On the contrary, Al_2TiO_5 decomposed very slowly in argon with the final proportion of Al_2O_3 to TiO_2 of 81:18 on the coating surface. The morphology of the ceramic coatings after the calcination was also different. The coatings calcined in argon were fined: the grains and pores were smaller than those of the coatings calcined in air. The weight gains of both coatings changed in the form of parabola law, and the weight gains of the coated samples treated in argon were comparatively lower than that of the as-coated samples. During the high temperature calcination, the samples treated in argon cannot distort easily, compared with the as-coated ones.
机译:通过NaAlO_2溶液中的脉冲双极微浆氧化(MPO)在Ti-6Al-4V合金中制备具有Al_2TiO_5(以涂覆样品)的主结晶的复合陶瓷涂层。将涂覆的样品分别在Ar和空气中煅烧1000℃。通过XRD,SEM和XRF研究涂层的相组合物,形态和元素含量。在Ar和涂覆的样品在1000℃的空气中煅烧,研究样品的氧化抗性。结果表明,在高温煅烧期间,Al_2TiO_5分解并转化为刚玉和金红石TiO_2。 AL_2TIO_5在空气中非常快地分解,在完全分解后,AL_2O_3至TIO_2的比例为44:55。相反,Al_2tio_5在氩气中非常缓慢地分解,涂层表面上的81:18的最终比例为Al_2O_3至TiO_2。煅烧后陶瓷涂层的形态也不同。在氩中煅烧的涂层被罚被:晶粒和孔小于空气中煅烧的涂层的涂层。两种涂层的重量增益以抛物线法的形式改变,并且在氩气中处理的涂覆样品的重量取得比涂覆样品相对低。在高温煅烧期间,与用涂层的煅烧,在氩气中处理的样品不能轻易扭曲。

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