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Surface modification of Ti dental implants by grit-blasting and micro-arc oxidation

机译:砂砾喷射和微弧氧化的Ti牙科植入物的表面改性

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The osseointegration capability of titanium dental implants is related to their chemical composition and surface roughness. In this study, the combination of grit-blasting and micro-arc oxidation had been used for producing the improved implant surfaces. The ceramic particles were projected to titanium dental implants through a nozzle at high velocity by means of compressed air to get high surface roughness. Then the surface of titanium implants was modified by micro-arc oxidation treatment. The current density, frequency and duty were 50-300 mA/cm{sup}2, 100 Hz, and 50%, respectively. A porous TiO{sub}2 layer was formed on the surface after the oxidation treatment. The surface structure of oxidized implants exhibited nanometer-sized pores with an average diameter of 0.2 μm. The TiO{sub}2 passive layer of the implant surface can attribute to the excellent biocompatibility. The high roughness (Ra=0.182 μm) formed by grit-blasting maximizes the interlocking between mineralized bone and the surface of the implant. Surface roughness in the manometer range formed by micro-arc oxidation treatment would play an important role in the adsorption of proteins, adhesion of osteoblastic cell and thus the rate of osseointegration.
机译:钛牙种植体的骨整合能力与其化学成分和表面粗糙度有关。在该研究中,砂砾喷砂和微弧氧化的组合已用于制造改进的植入表面。通过压缩空气将陶瓷颗粒突出到钛牙科植入物中,通过压缩空气,高速度以高速度升高,以获得高表面粗糙度。然后通过微弧氧化处理改性钛植入物的表面。电流密度,频率和占占50-300mA / cm {sup} 2,100 hz和50%。在氧化处理后在表面上形成多孔TiO {亚} 2层。氧化植入物的表面结构表现出平均直径为0.2μm的纳米尺寸的孔。植入表面的TiO {Sub} 2被动层可以归因于优异的生物相容性。通过砂砾喷射形成的高粗糙度(Ra =0.182μm)最大化了矿化骨和植入表面之间的互锁。通过微弧氧化处理形成的压力计范围内的表面粗糙度将在蛋白质的吸附中发挥重要作用,骨细胞的粘附性细胞和骨整合速率。

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