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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Fabrication and characterization of functionally graded nano-micro porous titanium surface by anodizing.
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Fabrication and characterization of functionally graded nano-micro porous titanium surface by anodizing.

机译:通过阳极氧化通过功能梯度纳米微孔钛表面的制造与表征。

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摘要

The purpose of this study was to fabricate and characterize nanotubular structure on machined titanium (MA) and resorbable blast media (RBM) treated titanium by anodizing. The anodized MA and RBM were characterized with scanning electron microscopy, transmission electron microscopy, X-ray diffraction, energy disperse spectra, X-ray photoelectron spectra, and nano-indentation and scratch test. Highly ordered nanotubular layers of individually 100 nm in diameter and 500 nm in length approximately were formed regardless of the substrates. The nanotubular layers consisted mainly of amorphous TiO(2) with trace fluorine. The nanotubular surfaces on both the substrates significantly reduced water contact angles and elastic modulus compared with those prior to anodizing. The anodizing treatment significantly increased the surface roughness of the smooth MA, but significantly decreased the surface roughness of the roughened RBM. The critical delamination forces of the nanotubular layer were not obtained due to the limitation of surface roughness. The anodized RBM consisted of a nano-micro porous graded structure, or a nanotubular amorphous fluoride containing TiO(2) layer on top of micro-roughened titanium surface, which is expected to significantly improve the surface area that can be used to deliver drugs and growth factors and alleviate the interfacial elastic modulus mismatch as to enhance osseointegration when compared with conventional dental and orthopedic implant devices with smooth or acid etched surface.
机译:本研究的目的是通过阳极氧化制造和表征加工钛(MA)和可再吸收的喷雾介质(RBM)处理的钛的纳米检查结构。阳极氧化MA和RBM具有扫描电子显微镜,透射电子显微镜,X射线衍射,能量分散光谱,X射线光电子能谱和纳米压痕和划痕试验。无论基材如何,形成高度有序100nm的单独纳管层,直径为100nm,长度约为500nm。纳米听层主要由痕量氟的无定形TiO(2)组成。与阳极氧化之前的那些相比,两个基板上的纳米纹表面显着降低了水接触角和弹性模量。阳极氧化处理显着增加了光滑MA的表面粗糙度,但显着降低了粗糙的RBM的表面粗糙度。由于表面粗糙度的限制,未获得纳米管层的临界分层力。阳极氧化RBM由纳米微多孔梯度结构组成,或含有TiO(2)层的纳米管非晶氟化物在微粗糙的钛表面顶部,预期可显着改善可用于提供药物的表面积和与具有光滑或酸蚀刻表面的常规牙科植入装置相比,生长因子和缓解界面弹性模量失配。

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