首页> 美国卫生研究院文献>The Open Biomedical Engineering Journal >Suppl 1-M16: Formation of Solution-derived Hydroxyapatite Coatings on Titanium Alloy in the Presence of Magnetron-sputtered Alumina Bond Coats
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Suppl 1-M16: Formation of Solution-derived Hydroxyapatite Coatings on Titanium Alloy in the Presence of Magnetron-sputtered Alumina Bond Coats

机译:Suppl 1-M16:在磁控溅射氧化铝键合涂层的存在下钛合金上溶液衍生的羟基磷灰石涂层的形成

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摘要

Hydroxyapatite Ca10(PO4)6(OH)2 (HAp) and calcium phosphate ceramic materials and coatings are widely used in medicine and dentistry because of their ability to enhance the tissue response to implant surfaces and promote bone ingrowth and osseoconduction processes. The deposition conditions have a great influence on the structure and biofunctionality of calcium phosphate coatings. Corrosion processes and poor adhesion to substrate material reduce the lifetime of implants with calcium phosphate coatings. The research has focused on the development of advanced methods to deposit double-layered ceramic oxide/calcium phosphate coatings by a hybrid technique of magnetron sputtering and thermal methods. The thermal method can promote the crystallization and the formation of HAp coatings on titanium alloy Ti6Al4V substrates at low temperature, based on the principle that the solubility of HAp in aqueous solutions decreases with increasing substrate temperature. By this method, hydroxyapatite directly coated the substrate without precipitation in the initial solution. Using a thermal substrate method, calcium phosphate coatings were prepared at substrate temperatures of 100-105 oC. The coated metallic implant surfaces with ceramic bond coats and calcium phosphate layers combine the excellent mechanical properties of metals with the chemical stability of ceramic materials. The corrosion test results show that the ceramic oxide (alumina) coatings and the double-layered alumina-calcium phosphate coatings improve the corrosion resistance compared with uncoated Ti6Al4V and single-layered Ti6Al4V/calcium phosphate substrates. In addition, the double-layered alumina/hydroxyapatite coatings demonstrate the best biocompatibility during in vitro tests.
机译:羟基磷灰石Ca10(PO4)6(OH)2(HAp)和磷酸钙陶瓷材料和涂料由于能够增强组织对植入物表面的反应能力,促进骨向内生长和骨传导过程而广泛用于医学和牙科领域。沉积条件对磷酸钙涂层的结构和生物功能有很大的影响。腐蚀过程和对基材的不良附着力会缩短带有磷酸钙涂层的植入物的寿命。该研究集中在通过磁控溅射和热方法的混合技术来沉积双层陶瓷氧化物/磷酸钙涂层的先进方法的开发上。基于HAp在水溶液中的溶解度随基材温度升高而降低的原理,热法可促进钛合金Ti6Al4V基材在低温下的结晶和HAp涂层的形成。通过这种方法,羟基磷灰石直接涂覆了基材,而没有在初始溶液中沉淀。使用热基质方法,在100-105 oC的基质温度下制备磷酸钙涂层。带有陶瓷粘结层和磷酸钙层的金属植入物涂层表面结合了金属的出色机械性能和陶瓷材料的化学稳定性。腐蚀测试结果表明,与未涂覆的Ti6Al4V和单层Ti6Al4V /磷酸钙基体相比,陶瓷氧化物(氧化铝)涂层和双层氧化铝-磷酸钙涂层提高了耐腐蚀性。此外,双层氧化铝/羟基磷灰石涂层在体外试验中显示出最佳的生物相容性。

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