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HAp-functionalized zirconia surfaces via hybrid laser process for dental applications

机译:HAP官能化氧化锆表面通过混合激光方法进行牙科应用

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摘要

The development of new approaches to improve the implant integration and subsequently its long-term maintenance is an actual challenge. In this way and trying to mimic natural bone composition, HAp-functionalized zirconia surfaces were produced by means of hybrid laser technique combining additive (laser sintering) and subtractive (laser machining) processes. Nd:YAG laser-generated textures were created to improve mechanical interlocking of hydroxyapatite (HAp) powder and consequently enhance its adhesion to zirconia surface. Different laser parameters and also different approaches were tested to optimize the textured line-patterning of zirconia surface. The created microtextures were characterized by Scanning Electron Microscopy (SEM). Furthermore, textured zirconia surfaces were functionalized with HAp by means of CO2 laser. Different power and scan speed laser parameters were tested to promote HAp retention inside of line-patterning. The results showed that it is possible to design the textured surface by changing energy density and atmosphere. Furthermore, high amount of retained and sintered bioactive material was found when high laser power and low scan speed were performed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:新方法的开发,提高植入物集成,随后其长期维护是一个实际挑战。以这种方式和试图模仿天然骨组合物,通过混合激光技术结合添加剂(激光烧结)和减法(激光加工)工艺来生产Hap官能化氧化锆表面。 ND:产生YAG激光产生的纹理以改善羟基磷灰石(HAP)粉末的机械互锁,从而提高其对氧化锆表面的粘附性。测试了不同的激光参数以及不同的方法,以优化氧化锆表面的纹理线图案化。通过扫描电子显微镜(SEM)来表征产生的微织物。此外,通过CO2激光器用HAP官能化织地用氧化锆表面。测试了不同的功率和扫描速度激光参数,以促进线路图案中的HAP保留。结果表明,可以通过改变能量密度和大气来设计纹理表面。此外,当进行高激光功率和低扫描速度时,发现了高量的保留和烧结的生物活性材料。 (c)2018年elestvier有限公司保留所有权利。

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