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Rapid hierarchical structuring of titanium surface by modulated fiber laser: Protecting the native surface chemistry

机译:钛纤维表面通过调制光纤激光快速分层构造:保护天然表面化学

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摘要

Sand blasting and acid etching are the most common methods used to increase the roughness of orthopedic and dental implants for better osseointegration. However, possible process related contaminations remaining from these methods may cause an uncertainty if the cells are responding to the surface roughness or to the chemical residues. On the other hand, since it is clear that the presence of top native oxide layer of Ti implants is the primary step for better osseointegration, it is necessary to modify the surfaces residue free where the lasers can be the solution. In this respect, commercially pure Ti samples were structured with hierarchical micro and nano features by using modulated microsecond pulsed fiber laser while the surface is protected to its native chemistry. Surfaces were analyzed for their chemistries, roughness and wetting properties prior and subsequent to the structuring process. (C) 2016 Elsevier B.V. All rights reserved.
机译:喷砂和酸蚀是增加骨科和牙科植入物粗糙度以实现更好的骨整合的最常用方法。但是,如果电池对表面粗糙度或化学残留物有反应,则这些方法残留的可能与过程相关的污染可能会导致不确定性。另一方面,由于很明显,Ti植入物的顶部天然氧化物层的存在是实现更好的骨整合的主要步骤,因此有必要在激光可以解决的情况下修改无表面残留的表面。在这方面,通过使用调制的微秒脉冲光纤激光器,将商业纯钛样品构造成具有分级的微米和纳米特征,同时保护表面不受其天然化学影响。在结构化过程之前和之后分析表面的化学性质,粗糙度和润湿性能。 (C)2016 Elsevier B.V.保留所有权利。

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