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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Preparation of PEO ceramic coating on Ti alloy and its high temperature oxidation resistance
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Preparation of PEO ceramic coating on Ti alloy and its high temperature oxidation resistance

机译:钛合金上PEO陶瓷涂层的制备及其耐高温氧化性能

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摘要

Ceramic coatings were prepared in Na2SiO3–Na2CO3–NaOH system by pulsed bi-polar plasma electrolytic oxidation on Ti–6Al–4V alloy. The phase composition, structure and the elemental distribution of the coatings were studied by XRD, SEM and energy dispersive spectroscopy, respectively. The thermal shock resistance of the coated samples at 850 C was evaluated by the thermal shock tests. The high temperature oxidation resistance of the coating samples at 500 C was investigated. The results showed that the coating was mainly composed of rutile- and anatase TiO2, Increasing the concentration of Na2SiO3, TiO2 content decreased gradually while the thickness of the coating increased. There were a large amount of micro pores and sintered particles on the surface of the coatings. Increasing concentration of Na2SiO3, the sintered particles on the surface turned large, and the Si content increased while the Ti content decreased gradually. When the concentration of Na2SiO3 was 15 g/L, the thermal shock resistance of the coatings was better than that of the coatings that prepared under other Na2SiO3 concentrations. The coating samples prepared under the optimized technique process based on the thermal shock tests improved the high temperature oxidation resistance at 500 C greatly, whether considering the isothermal oxidation or the cyclic oxidation.
机译:通过在Ti-6Al-4V合金上进行脉冲双极等离子体电解氧化,在Na2SiO3–Na2CO3–NaOH体系中制备陶瓷涂层。通过XRD,SEM和能谱分析研究了涂层的相组成,结构和元素分布。通过热冲击试验评估了涂层样品在850℃下的抗热冲击性。研究了涂层样品在500℃下的高温抗氧化性。结果表明,涂​​层主要由金红石型和锐钛矿型TiO2组成,随着Na2SiO3浓度的增加,TiO2含量逐渐降低,而涂层厚度增加。涂层表面有大量的微孔和烧结的颗粒。随着Na 2 SiO 3浓度的增加,表面烧结颗粒变大,Si含量增加,而Ti含量逐渐降低。当Na 2 SiO 3的浓度为15g / L时,该涂层的耐热冲击性优于在其他Na 2 SiO 3浓度下制备的涂层。无论是考虑等温氧化还是循环氧化,在基于热冲击试验的优化工艺流程下制备的涂层样品均大大提高了500°C时的高温抗氧化性。

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