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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Influence of surface pre-treatment with mechanical polishing, chemical, electrochemical and ion sputter etching on the surface properties, corrosion resistance and MG-63 cell colonization of commercially pure titanium
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Influence of surface pre-treatment with mechanical polishing, chemical, electrochemical and ion sputter etching on the surface properties, corrosion resistance and MG-63 cell colonization of commercially pure titanium

机译:用机械抛光,化学,电化学和离子溅射蚀刻对地表性,耐腐蚀性和商业纯钛的Mg-63细胞定植的影响

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摘要

The impact of four pre-treatment techniques on the surface morphology and chemistry, residual stress, mechanical properties, corrosion resistance in a physiological saline solution and cell colonization of commercially pure titanium is examined in detail. Mechanical polishing, electrochemical etching, chemical etching in Kroll's reagent, and ion sputter etching with argon ions were applied. Surface morphologies reflect the nature of surface layer removal. Significant roughening of the surface and a characteristic microtopology become apparent as a result of the sensitivity of chemical and ion sputter etching to the grain orientation. The hardness in the near surface region was controlled by the amount of residual stress. Etching of the stressed surface layer led to a reduction in residual stress and surface hardness. A compact passivation layer composed of TiO, TiO2 and Ti2O3 native oxides imparted high corrosion resistance to the surface after mechanical polishing, chemical and electrochemical etching. The ion sputter etched surface showed substantially reduced corrosion resistance, where the corrosion process was controlled by electron transfer. The specific topology affected the adhesion of the cell to the surface rather than the cell area coverage. The cell area coverage increased with the corrosion stability of the surface.
机译:详细研究了四种预处理技术对表面形态和化学,残余应力,机械性能,商业纯钛的细胞定子中的耐腐蚀性。施用机械抛光,电化学蚀刻,克尔试剂中的化学蚀刻,以及具有氩离子的离子溅射蚀刻。表面形态反映了表面层去除的性质。由于化学和离子溅射蚀刻到晶粒取向的敏感性,表面和特征性微波学的显而易见。近表面区域的硬度由残余应力的量控制。应力表面层的蚀刻导致残余应力和表面硬度降低。在机械抛光,化学和电化学蚀刻之后,由TiO,TiO 2和Ti2O3天然氧化物组成的紧凑型钝化层赋予表面高耐腐蚀性。离子溅射蚀刻表面显示出显着降低的耐腐蚀性,其中通过电子转移控制腐蚀过程。特定拓扑影响细胞对表面而不是细胞面积覆盖的粘附性。细胞面积覆盖随着表面的腐蚀稳定性而增加。

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