首页> 外文会议>International Conference on Advanced Ceramics and Composites >MICROSTRUCTURAL CHARACTERISATION OF POROUS TiO_2 CERAMIC COATINGS FABRICATED BY PLASMA ELECTROLYTIC OXIDATION OF Ti
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MICROSTRUCTURAL CHARACTERISATION OF POROUS TiO_2 CERAMIC COATINGS FABRICATED BY PLASMA ELECTROLYTIC OXIDATION OF Ti

机译:Ti的血浆电解氧化制造多孔TiO_2陶瓷涂层的微观结构表征

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This study aims at providing a thorough examination of compositional and microstructural heterogeneities in the porous oxide ceramic surface layers formed on Ti by plasma electrolytic oxidation (PEO). The PEO-titania layers of up to 5um thick were produced using 0.02...0.04M NaH_2PO_4 electrolyte solutions in the voltage range of 450... 500V DC. Advanced methods of X-ray diffractometry (XRD), scanning electron microscopy (SEM) and field-emission transmission electron microscopy (FE-TEM) were employed to observe the surface layer morphology and characterise its crystal structure across the whole coating thickness. As revealed by XRD analysis, the surface layers consist of both anatase and rutile evenly distributed across the layer thickness. Detailed TEM studies showed that a continuous amorphous layer exists at the top of the PEO coating, the layer comprises mainly T1O2, with some phosphorus incorporated from the electrolyte. Underneath, there is a porous crystalline layer with uniformly distributed nano-scale pores (<50nm), anatase nanocry stallites (<100nm) and submicrometer-scale (0.1 to 1μm) rutile crystallites. Large micrometre size pores (about 1...3um in diameter) surrounded by nanocrystalline anatase are found to exist at the bottom of the porous crystalline layer, adjacent to the thin interfacial barrier layer. Correlations between thermal-physical properties of the coating material, heat dissipation conditions and microstructural evolution in the surface layer during coating formation are discussed.
机译:该研究旨在通过等离子体电解氧化(PEO)来提供在Ti上形成的多孔氧化物陶瓷表面层中的组成和微观结构异质性的彻底检查。使用0.02 ... 0.04M NaH_2PO_4电解质溶液在450 ... 500V DC的电压范围内产生高达5um厚的PEO-二氧化钛层。采用X射线衍射法(XRD),扫描电子显微镜(SEM)和场发射透射电子显微镜(FE-TEM)的先进方法观察表面层形态,并在整个涂层厚度上表征其晶体结构。如XRD分析所揭示的,表面层由锐钛矿和金红石组成,均匀地分布在层厚度上。具体的TEM研究表明,在PEO涂层的顶部存在连续的无定形层,该层主要包含T1O2,其中一些磷来自电解质。在下面,存在具有均匀分布的纳米尺度孔(<50nm)的多孔晶体层,锐钛矿纳米晶体(<100nm)和亚微米(0.1至1μm)金红石微晶。发现由纳米晶锐钛矿围绕的大微米尺寸孔(直径为1 ... 3um)存在于多孔晶体层的底部,与薄界面阻挡层相邻。讨论了涂层材料的涂层材料,散热条件和微观结构演化的热物理性质之间的相关性。

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