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通过超声喷丸表面纳米结构化和消除应力增强工业纯钛的成骨细胞增殖和耐腐蚀性。

Enhanced osteoblast proliferation and corrosion resistance of commercially pure titanium through surface nanostructuring by ultrasonic shot peening and stress relieving.

作者信息

Jindal Shitu, Bansal Rajesh, Singh Bijay P, Pandey Rajiv, Narayanan Shankar, Wani Mohan R, Singh Vakil

机构信息

1  Faculty of Dental Sciences, Institute of Medical Sciences, Banaras Hindu University, Varanasi, India.

出版信息

J Oral Implantol. 2014 Jul;40 Spec No:347-55. doi: 10.1563/AAID-JOI-D-12-00006.

Abstract

This investigation was carried out to study the effect of a novel process of surface modification, surface nanostructuring by ultrasonic shot peening, on osteoblast proliferation and corrosion behavior of commercially pure titanium (c p-Ti) in simulated body fluid. A mechanically polished disc of c p-Ti was subjected to ultrasonic shot peening with stainless steel balls to create nanostructure at the surface. A nanostructure (<20 nm) with inhomogeneous distribution was revealed by atomic force and scanning electron microscopy. There was an increase of approximately 10% in cell proliferation, but there was drastic fall in corrosion resistance. Corrosion rate was increased by 327% in the shot peened condition. In order to examine the role of residual stresses associated with the shot peened surface on these aspects, a part of the shot peened specimen was annealed at 400°C for 1 hour. A marked influence of annealing treatment was observed on surface structure, cell proliferation, and corrosion resistance. Surface nanostructure was much more prominent, with increased number density and sharper grain boundaries; cell proliferation was enhanced to approximately 50% and corrosion rate was reduced by 86.2% and 41% as compared with that of the shot peened and the as received conditions, respectively. The highly significant improvement in cell proliferation, resulting from annealing of the shot peened specimen, was attributed to increased volume fraction of stabilized nanostructure, stress recovery, and crystallization of the oxide film. Increase in corrosion resistance from annealing of shot peened material was related to more effective passivation. Thus, the surface of c p-Ti, modified by this novel process, possessed a unique quality of enhancing cell proliferation as well as the corrosion resistance and could be highly effective in reducing treatment time of patients adopting dental and orthopedic implants of titanium and its alloys.

摘要

本研究旨在探讨一种新型表面改性工艺——超声喷丸表面纳米结构化处理,对商业纯钛(c p-Ti)在模拟体液中的成骨细胞增殖及腐蚀行为的影响。将一块经过机械抛光的c p-Ti圆盘用不锈钢球进行超声喷丸处理,以在其表面形成纳米结构。通过原子力显微镜和扫描电子显微镜揭示了一种分布不均匀的纳米结构(<20 nm)。细胞增殖增加了约10%,但耐腐蚀性急剧下降。在喷丸处理条件下,腐蚀速率提高了327%。为了研究与喷丸处理表面相关的残余应力在这些方面的作用,将一部分喷丸处理后的试样在400°C下退火1小时。观察到退火处理对表面结构、细胞增殖和耐腐蚀性有显著影响。表面纳米结构更加突出,数量密度增加,晶界更清晰;与喷丸处理和原始状态相比,细胞增殖分别提高到约50%,腐蚀速率分别降低了86.2%和41%。喷丸处理试样退火后细胞增殖的显著改善归因于稳定纳米结构体积分数的增加、应力恢复以及氧化膜的结晶。喷丸处理材料退火后耐腐蚀性的提高与更有效的钝化有关。因此,通过这种新工艺改性的c p-Ti表面具有增强细胞增殖和耐腐蚀性的独特性质,在减少采用钛及其合金牙科和骨科植入物患者的治疗时间方面可能非常有效。

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