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作 者:张立钊[1] 高勃[1] 柳正明[1] 马楚凡[1] 闫召民[2]
机构地区:[1]第四军医大学口腔医学院,陕西西安710032 [2]解放军第91医院,河南焦作450003
出 处:《牙体牙髓牙周病学杂志》2008年第5期277-280,共4页Chinese Journal of Conservative Dentistry
基 金:国家自然科学基金资助项目(50471074);第四军医大学后备人才基金
摘 要:目的:评价钛铌锆锡(TNZS)合金表面经微弧氧化(MAO)后的理化性能。方法:对钛铌锆锡合金试件表面进行微弧氧化处理,观察其表面形貌,分析膜层的相位和元素组成,检测膜层硬度、厚度、膜层以及基体的结合强度、表面能、表面粗糙度。结果:钛铌锆锡合金经微弧氧化处理可在其表面形成粗糙、多孔的氧化膜,氧化膜由Ti、O、Ca、P、Zr、Nb、Sn7种元素组成,金相结构主要为锐钛矿相的TiO2和金红石相TiO2,膜层硬度414HV,厚度26μm,结合力32N,表面能62.9mJ/m2,表面粗糙度1.175μm。结论:经微弧氧化处理的钛铌锆锡合金表面性能发生改变,表面形成粗糙、多孔、结合紧密并富含钙磷元素的氧化膜,可能有利于提高合金的生物学性能。AIM : To evaluate physicochemical properties of Ti - 24Nb - 4Zr - 7.9 Sn ( TNZS ) treated with micro - arc oxidation. METHODS: TNZS alloy was treated with micro - arc oxidation. The surface morphology was observed with SEM. The phase, elemental composition, microhardness, thickness, bonding force, surface energy and roughness of the film were characterized respectively. RESULTS: The surface was rough and multiporous, the film was composed of Ti, Nb, Zr, Sn, O, Ca and P elements. XRD indicated that the phases in the film were rutile and anatase phase TiO2. The feature of the film was 414HV hard and 26μm thick,with a bonding force of 32N ,62.9 mJ/ m2 surface energy and roughness of 1. 175μm. CONCLUSION: A rough, multiporous and tightly - bonding film is formed on the surface of TNZS by micro - arc oxidation , which would improve the biological performance of the alloy.
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