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首页> 外文期刊>Journal of Manufacturing Processes >Enhanced corrosion, tribocorrosion resistance and controllable osteogenic potential of stem cells on micro-rippled Ti6A14V surfaces produced by pulsed laser remelting
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Enhanced corrosion, tribocorrosion resistance and controllable osteogenic potential of stem cells on micro-rippled Ti6A14V surfaces produced by pulsed laser remelting

机译:通过脉冲激光重熔产生的微纹波纹Ti6a14V表面上增强干细胞的腐蚀,染色腐蚀性和可控的骨质发生潜力

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摘要

Laser-based surface modification methods are employed to augment the surface properties of engineering components. In the presented work, pulsed laser remelting of Ti6Al4V surfaces using a long pulsed laser was used to generate ripple-like micro-features with different feature sizes. The resultant surfaces exhibited improved corrosion and tribocorrosion resistance. Anisotropic wetting characteristics of the laser remelted surfaces led to elongation of water droplets on the surfaces. The osteogenic potential of the surfaces as well as the orientations of human mesenchymal stem cells on the surfaces were dependent on the surface features. On surfaces having 20 ?m ripples, differentiation of stem cells towards osteoblastic lineage was higher than that on acid etched surfaces, and the cells were prominently oriented across the ripples, parallel to the laser scanning track. On the other hand, surfaces having 100 ?m ripples suppressed the cellular activities on them. While the resistance to corrosion and tribocorrosion of laser remelted surfaces can be attributed to the evolved microstructure and the formation of stable oxide layers, the physical characteristics like topography and wettability dictated cellular behavior on the surfaces. Taken together, the work demonstrates the use of pulsed laser remelting as a simple yet potentially effective route towards manufacturing Ti6Al4V orthopedic implants with improved biofunctionalities.
机译:采用基于激光的表面改性方法来增加工程部件的表面特性。在所提出的工作中,使用使用长脉冲激光的Ti6Al4V表面的脉冲激光重熔用于产生具有不同特征尺寸的纹波状微观特征。所得到的表面表现出改善的腐蚀和微腐蚀性抗性。激光再熔断表面的各向异性润湿特性导致表面上的水滴伸长。表面的成骨介质潜力以及人间充质干细胞在表面上的取向依赖于表面特征。在具有20·m纹的表面上,干细胞对骨细胞谱的分化高于酸蚀刻表面上的干细胞,并且细胞突出地定向穿过涟漪,平行于激光扫描轨道。另一方面,具有100Ω纹波的表面抑制了它们的细胞活动。虽然激光重熔表面的耐腐蚀性和腐蚀性腐蚀性可以归因于进化的微观结构和稳定的氧化物层的形成,但是地形和润湿性等物理特性对表面上的蜂窝行为决定。在一起,工作表明使用脉冲激光重熔作为制造具有改进的生物功能的Ti6Al4V骨科植入物的简单且潜在有效的途径。

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