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Micro Extrusion of Ultrafine Grained Titanium Prepared by ECAP 被引量:3
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作者 王效岗 LIU Jianlong +3 位作者 ZHAO Xicheng LIU Xiaoyan XIE Haibo JIANG Zhengyi 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第2期437-443,共7页
Micro compression and micro extrusion experiments of ultrafine grained titanium cylindrical specimens in diameters of 4, 2, and 1 mm prepared by equal channel angular pressing(ECAP) were conducted on the micro plast... Micro compression and micro extrusion experiments of ultrafine grained titanium cylindrical specimens in diameters of 4, 2, and 1 mm prepared by equal channel angular pressing(ECAP) were conducted on the micro plastic forming test machine. The effects of specimen size, grain size, deformation temperature and extrusion speed on the flow stress and forming properties of the ultrafine grained pure titanium were investigated. The flow stress of ultrafine grained pure titanium specimen decreases with decreasing specimen size. The yield limit of pure titanium with refined grain prepared by ECAP is significantly greater than that of coarse grained specimen. Also the research results show that the flow stress of specimen increases with decreasing deformation temperature and with the increase of the strain rate, and the ultrafine grained pure titanium possesses good micro forming properties at deformation temperature of 300 ℃. 展开更多
关键词 micro forming ECAP pure titanium flow stress micro extrusion
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Engineering nano-structures with controllable dimensional features on micro-topographical titanium surfaces to modulate the activation degree of M1 macrophages and their osteogenic potential 被引量:2
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作者 Luxin Liang Qianli Huang +4 位作者 Hong Wu Hao He Guanghua Lei Dapeng Zhao Kun Zhou 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第1期167-178,共12页
Modulating the activation state and degree of macrophages still remains as a challenge for the topographical design of Ti-based implants.In this work,micro/nano-structured coatings were prepared on Ti substrates by mi... Modulating the activation state and degree of macrophages still remains as a challenge for the topographical design of Ti-based implants.In this work,micro/nano-structured coatings were prepared on Ti substrates by micro-arc oxidation(MAO)and subsequent hydrothermal(HT)treatment.By varying the HT conditions,plate-like nano-structures with an average length of 80,440 or 780 nm were obtained on MAO-prepared micro-topographical surfaces.Depending on the dimensional features of nano-plates,the specimens were noted as Micro,Micro/Nano-180,Micro/Nano-440 and Micro/Nano-780,respectively.The in vitro results showed that the activation state and degree of macrophages could be effectively modulated by the micro/nano-structured surfaces with various dimensional features.Compared to the Micro surface,the Micro/Nano-180 surface activated both M1 and M2 phenotype in macrophages,while the Micro/Nano-440 and Micro/Nano-780 surfaces polarized macrophages to their M1 phenotype.The activation degree of M1 macrophages followed the trend:Micro<Micro/Nano-180<Micro/Nano-440<Micro/Nano-780.However,the osteogenic potential of the activated macrophages in response to various surfaces were in the order:Micro≈Micro/Nano-780<Micro/Nano-180<Micro/Nano-440.Together,the findings presented in this work indicate that engineering nano-structures with controllable dimensional features is a promising strategy to modulate macrophage activation state and degree.In addition,it is essential to determine the appropriate activation degree of M1 macrophages for enhanced osteogenesis. 展开更多
关键词 titanium micro/nano-structures Macrophages activation Inflammatory response OSTEOGENESIS
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Preparation and properties of a cerium-containing hydroxyapatite coating on commercially pure titanium by micro-arc oxidation 被引量:2
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作者 HUANG Yong WANG Yingjun +2 位作者 NING Chengyun NAN Kaihui HAN Yong 《Rare Metals》 SCIE EI CAS CSCD 2008年第3期257-260,共4页
A porous cerium-containing hydroxyapatite coating on commercially pure titanium was prepared by micro-arc oxidation (MAO) in an electrolytic solution containing calcium acetate, p-glycerol phosphate disodium salt pe... A porous cerium-containing hydroxyapatite coating on commercially pure titanium was prepared by micro-arc oxidation (MAO) in an electrolytic solution containing calcium acetate, p-glycerol phosphate disodium salt pentahydrate (β-GP), and cerium nitrate. The thickness, phase, composition morphology, and biocompatibility of the oxide coating were characterized by X-ray diffraction (XRD), electron probe microanalysis (EPMA), scanning electron microscopy (SEM) with energy dispersive X-ray spectrometer (EDS), and cell culture. The thickness of the MAO film is about 15-25 ~tm, and the coating is porous and uneven, without any apparent interface to the titanium substrates. The results of XRD and EDS show that the porous coating is made up of hydroxyapatite (HA) film containing Ce. The favorable osteoblast cell affinity makes the Ce-HA film have a good biocompatibility. The Ce-HA film is expected to have significant medical applications as dental implants and artificial bone joints. 展开更多
关键词 SURFACE CERIUM hydroxyapatite coating micro-arc oxidation titanium POROSITY
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Influence of Electrolyte Composition on the Calcium-Phosphorus compound Coating on Titanium Substrate by Micro-arc Oxidation 被引量:2
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作者 ZHUXiu-hong WANGCong-zeng KOUBin-da SUXue-kuan ZHANGWen-quan 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第05B期1064-1067,共4页
The compound bioceramic coating containing calcium (Ca) and phosphorus (P) on titanium alloy substrate was prepared by means of micro-arc oxidation (MAO) treatment. The results show that under the different electrolyt... The compound bioceramic coating containing calcium (Ca) and phosphorus (P) on titanium alloy substrate was prepared by means of micro-arc oxidation (MAO) treatment. The results show that under the different electrolyte the coating with the color of gray or black and surface morphology of cauliflower or honeycomb, where Ca content and P contain can attain 30% and 20% respectively, can be obtained. Meanwhile, the influences of electrolyte temperature, current density and discharge time on morphology and thickness of coating are also discussed here. 展开更多
关键词 微电弧氧化 钛合金 磷涂层 钙涂层 陶瓷涂层
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Characterization of Micro-arc Oxidized Titanium 被引量:1
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作者 Inho Han Jai Hyuk Choi +2 位作者 Bao Hong Zhao Hong Koo Baik In-Seop Lee 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2005年第B12期178-180,共3页
The observation of the sparkling discharges during the micro-arc oxidation process in KOH aqueous electrolyte was achieved. The change of surface morphology was progressively observed and a plausible pore formation me... The observation of the sparkling discharges during the micro-arc oxidation process in KOH aqueous electrolyte was achieved. The change of surface morphology was progressively observed and a plausible pore formation mechanism is proposed. Cell proliferation and ALP activity of micro- arc oxidized titanium was evaluated by human body derived osteoblasts and sligtaly better than those of blasted surface. 展开更多
关键词 micro-arc oxidation titanium oxide dental implant MORPHOLOGY
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Microstructure evolution of a new near-β titanium alloy:Ti555211 during high-temperature deformation 被引量:5
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作者 Zhen An Jin-Shan Li Yong Feng 《Rare Metals》 SCIE EI CAS CSCD 2015年第11期757-763,共7页
The isothermal compression testing of Ti555211 titanium alloys was carried out at deformation temperatures from 750 to 950 ℃ in 50 ℃ intervals,with strain rate of 0.001-1.000 s-1and height reduction of 20%-60%.The e... The isothermal compression testing of Ti555211 titanium alloys was carried out at deformation temperatures from 750 to 950 ℃ in 50 ℃ intervals,with strain rate of 0.001-1.000 s-1and height reduction of 20%-60%.The effect of processing parameters(deformation temperature,strain rate and deformation degree) on the microstructure evolution and the microstructure variables was investigated.The results show that the content of primary α phase decreases with the increase in deformation temperature.The effect of strain rate on microstructure variables of isothermally compressed Ti555211 alloy is mainly dependent on the deformation temperature.The fine second α phase partly transforms to β phase due to the deformation heat effect at the high strain rate,α phase becomes globular with temperature increasing and strain rate decreasing.In contrast,α phase is refined with temperature decreasing and strain rate increasing.The deformation degree has a little influence on the grain size and the morphology of primary α phase,but the effect of deformation degree on the morphology of second α phase is significant.The larger deformation degree is in favor of the globularization of lamellar α structure. 展开更多
关键词 titanium alloy High-temperature deformation microS
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Scanning Electron Microscopy (SEM) Analysis and Hardness of Diffusion Bonded Titanium-Titanium and Titanium-Copper Plates with Static Force and without Interlayers
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作者 Joel Hemanth 《Open Journal of Composite Materials》 2017年第2期105-116,共12页
In the present research, commercially pure Ti (grade-2) has been diffusion bonded with Ti and Cu plate under static force without any interlayers. The diffusion bonded samples were tested for micro hardness and micro ... In the present research, commercially pure Ti (grade-2) has been diffusion bonded with Ti and Cu plate under static force without any interlayers. The diffusion bonded samples were tested for micro hardness and micro structural analysis through optical microscopy and SEM. It is found from the present investigation that the bonded zone is affected by the processing variables such as bonding time (1 - 2 h), bonding force (250 N), bonding temperature (973 - 1073 K) and surface roughness. Results of the investigation revealed that temperature range of ?973 - 1073 K along with time duration of 1 - 2 hours in vacuum has resulted in a joint having high hardness with minimum pores. Hardness of the bond depends on the grain boundary diffusion at the interface and maximum hardness was achieved in the case of Ti-Cu joints. When Ti-Cu plates were used for bonding at 973 K for 2 hours, Cu-Ti solid solution along with a zone of different intermetallics was formed in the bonded zone. However, at higher temperatures, no continuous zone of intermetallics was found in the bonded region but instead Ti-Cu solid solution appeared. 展开更多
关键词 Diffusion BONDING titanium micro HARDNESS Surface ROUGHNESS microstructure
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Fabrication of Micro/Nano-textured Titanium Alloy Implant Surface and Its Infl uence on Hydroxyapatite Coatings
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作者 张蕊 万熠 +4 位作者 AI Xing MEN Bo WANG Teng LIU Zhanqiang ZHANG Dong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第2期440-445,共6页
We put forward a protocolcombining laser treatment and acid etching to obtain multiscale micro/nano-texture surfaces of titanium alloy implant.Firstly,the operationalparameters of the laser were optimized to obtain an... We put forward a protocolcombining laser treatment and acid etching to obtain multiscale micro/nano-texture surfaces of titanium alloy implant.Firstly,the operationalparameters of the laser were optimized to obtain an optimum current.Secondly,the laser with the optimum operationalparameters was used to fabricate micro pits.Thirdly,multiple acid etching was used to clean the clinkers of micro pits and generate submicron and nanoscale structures.Finally,the bioactivity of the samples was measured in a simulated body fluid.The results showed that the micropits with a diameter of 150 μm and depth of 50 μm were built successfully with the optimized working current of 13 A.In addition,submicron and nanoscale structures,with 0.5-2 μm microgrooves and 10-20 nm nanopits,were superimposed on micro pits surface by multiple acid etching.There was thick and dense HA coating only observed on the multiscale micro/nano-textured surface compared with polished and micro-textured surface.This indicated that the multiscale micro/nano-texture surface showed better ability toward HA formation,which increased the bioactivity of implants. 展开更多
关键词 titanium alloy implant laser treatment acid etching bioactivity micro/nano-textures
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Preparation of Hydrophobic Surface on Titanium by Micro-Rolling and Laser Diffusion Carbonitriding
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作者 唐普洪 FENG Chongyou +1 位作者 XU Laitao ZHANG Jiabo 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第3期533-537,共5页
The application of rolling for fabricating grate on titanium stripe has been explored in this paper. Then the mechanically robust Ti(C,N) diffusion layer was synthetized directly on the grates by laser carbonitridin... The application of rolling for fabricating grate on titanium stripe has been explored in this paper. Then the mechanically robust Ti(C,N) diffusion layer was synthetized directly on the grates by laser carbonitriding in the mixture gas of nitrogen and methane. The results shows that the carbonitriding process is accelerated by temperature enhancement with decreasing scanning speed, The Ti(C,N) diffusion layer is kept at 2 ~nn in thickness, when the scanning speed is smaller than 4 mm/s. The contact angle increases from 20~ to 143.6~ by designing an appropriate grate size and surface roughness. Meanwhile, the relationship between hydrophobicity, hardness performance and scanning speed is also discussed. The hardness of diffusion layer increases with decreasing laser scanning speed, and is up to 11.2 GPa. The surface structure and hydrophobic state are maintained after three cycles of sandpaper abrasion, which has improved the robustness of surface grate. 展开更多
关键词 titanium hydrophobic surface micro-rolling laser diffusion carbonitriding (LDC)
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Diffusive healing of internal fatigue micro-cracks in pure titanium
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作者 杨君刚 孙军 张海龙 《中国有色金属学会会刊:英文版》 CSCD 2001年第5期675-680,共6页
The internal micro cracks with the critical length about 30?μm and thickness less than 1?μm were introduced into the pure titanium samples by uniaxial tension compression low cycle fatigue method. The experimental r... The internal micro cracks with the critical length about 30?μm and thickness less than 1?μm were introduced into the pure titanium samples by uniaxial tension compression low cycle fatigue method. The experimental results indicate that the internal fatigue micro crack clearly evolves from the original penny shaped crack into a string of spherical voids in the longitudinal section plane of the fatigue sample after the vacuum diffusive healing at the high temperature. The quantitative relationship between the radius and the spacing of spherical voids depends on the crack position (within grains, on grain boundaries or transgranular sites) and its orientations within the grain. The diffusive healing, the related thermodynamics and mechanism, and the effect of the surface tension anisotropy on the relationship between void diameter and void spacing are also discussed. 展开更多
关键词 pure titanium internal fatigue micro crack diffusive healing
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Effect of a Hybrid Micro/Nano-integrated Titanium Surface on Behavior of Rat Osteoblasts 被引量:1
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作者 王朝南 冯彦博 +4 位作者 WANG Dafeng ZHENG Yuanbo SU Zhongliang FU Jiaxing YANG Xianyan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第2期459-468,共10页
The objective of this study was to investigate the effect of a new combined micro/nanoscale implant surface feature on osteoblasts' behaviors including cell morphology, adhesion, proliferation, differentiation, and m... The objective of this study was to investigate the effect of a new combined micro/nanoscale implant surface feature on osteoblasts' behaviors including cell morphology, adhesion, proliferation, differentiation, and mineralization in vitro. A new micro/nano-hybrid topography surface was fabricated on commercial pure titanium(Cp Ti) by a two-step sandblasted acid-etching and subsequent alkali-and heattreatment(SA-AH). The conventional sandblasted/acid-etching(SA) treatment and alkali and heat(AH) treatment were also carried out on the Cp Ti as controls. Surface microstructures of the Ti disc samples were assessed by scanning electron microscopy(SEM). The neonatal rat calvaria-derived osteoblasts were seeded on these discs and the initial cell morphology was evaluated by SEM and immunofluorescence. Initial adhesion of the cells was then assayed by DAPI staining at 1, 2, and 4 h after seeding. The Cell Counting Kit-8(CCact K8) assay, gene expression of osteoblastic markers(ALP, Col 1, OCN, BSP, OSX, Cbfα1) and Alizarin Red S staining assays were monitored respectively for cell proliferations, differentiation and mineralization. The results show significant differences in osteoblast's behaviors on the four kinds of Ti surfaces. Compared with Cp Ti surface, the SA and AH treatment can significantly promote cell adhesion, differentiation and mineralization of osteoblasts. In particular, the combined SA and AH treatments exhibit synergistic effects in comparison with the treatment of SA and AH individually, and are more favorable for stimulating a series of osteogenous responses from cell adhesion to mineralization of osteoblasts. In summary, this study provides some new evidence that the integrated micro/nanostructure on the Cp Ti surface may promote bone osseointegration between the Ti implantbone interfaces in vitro. 展开更多
关键词 micro-/nano-texture osteoblast behavior surface treatment osseointegration titanium
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Performance and Research Progress of Oxide Ceramic Coatings by Micro-arc Oxidation on Shipbuilding Titanium Alloy
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《中国表面工程》 EI CAS CSCD 北大核心 2013年第1期98-101,共4页
关键词 《中国表面工程》 英文摘要 期刊 编辑工作
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电参数调控TC4钛合金微弧氧化膜层耐蚀性的研究
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作者 王晟 张亚利 +4 位作者 刘昊明 刘昱畅 王浩旭 马颖 李元东 《稀有金属材料与工程》 北大核心 2026年第1期184-192,共9页
采用极差分析法研究电参数(电压、脉冲频率、占空比和处理时间)对TC4钛合金微弧氧化膜层耐蚀性的共同影响,进而探寻影响膜层耐蚀性的电参数显著性关系和最佳因素水平组合。同时结合膜层形貌和物相组成进一步探讨电参数对膜层耐蚀性的影... 采用极差分析法研究电参数(电压、脉冲频率、占空比和处理时间)对TC4钛合金微弧氧化膜层耐蚀性的共同影响,进而探寻影响膜层耐蚀性的电参数显著性关系和最佳因素水平组合。同时结合膜层形貌和物相组成进一步探讨电参数对膜层耐蚀性的影响机制并建立回归方程,以此来实现通过电参数对微弧氧化膜层耐蚀性的调控。结果表明:占空比对膜层电化学耐蚀性影响的显著性最高,其次是脉冲频率和电压,处理时间对其影响较小。占空比和脉冲频率通过改变燃弧放电时间和熄弧冷却时间来影响膜层结构和性能,增加电压、占空比、处理时间或降低脉冲频率可使电源输出功率增加,导致膜层厚度增加、微孔孔径增大、致密度降低,膜层中Al2TiO5的生成效率更高,电化学耐蚀性能随之降低。通过相关系数法检验可知:所建立回归方程的因变量与自变量之间具有高度相关性,可以为钛合金微弧氧化膜的性能调控提供理论支持和预测方法。 展开更多
关键词 TC4钛合金 微弧氧化 电参数 耐蚀性 回归分析
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纳米二氧化钛粒径对硫铝酸盐水泥基复合材料力学性能的影响
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作者 邢君 张立卿 邱斌 《混凝土》 北大核心 2026年第1期75-81,共7页
硫铝酸盐水泥凭借其快硬、早强和微膨胀特性,在修补加固工程中发挥着关键作用,但存在晶体粒径大,水化产物分布不均匀的问题。为进一步提升其力学性能以满足工程需求,引入纳米二氧化钛进行改性,并重点研究其粒径的影响。纳米二氧化钛的... 硫铝酸盐水泥凭借其快硬、早强和微膨胀特性,在修补加固工程中发挥着关键作用,但存在晶体粒径大,水化产物分布不均匀的问题。为进一步提升其力学性能以满足工程需求,引入纳米二氧化钛进行改性,并重点研究其粒径的影响。纳米二氧化钛的粒径显著影响其在水泥基体中的纳米核数量和分散程度,进而影响复合材料的性能。采用不同粒径(20 nm、50 nm和100 nm)纳米二氧化钛制备硫铝酸盐水泥基复合材料,并分析了纳米二氧化钛粒径对硫铝酸盐水泥基复合材料工作性能和力学性能的影响规律及作用机制。结果表明:随着粒径增大,纳米二氧化钛对硫铝酸盐水泥基材料的工作性能降低的效果减弱。综合抗压强度、抗折强度、劈裂抗拉强度和压缩韧性等力学性能指标,粒径100 nm的纳米二氧化钛对硫铝酸盐水泥基复合材料的力学性能改善最为显著,在养护龄期7 d时,粒径100 nm纳米二氧化钛复合硫铝酸盐水泥基复合材料的抗折强度和压缩功分别为12.5 MPa和75.2 J,较空白对照组依次提升了31.6%和75.1%。适宜粒径的纳米二氧化钛可降低氢氧化钙的晶体取向、细化氢氧化钙晶体粒径和提高基体的密实程度,从而改善硫铝酸盐水泥基复合材料的力学性能。 展开更多
关键词 纳米二氧化钛 硫铝酸盐水泥 工作性能 力学性能 微观机理
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Micro-CT评价WaveOne预备根管后根管偏移的实验研究 被引量:3
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作者 张堃 耿楠 +1 位作者 王轲 李谨 《口腔医学》 CAS 2014年第11期823-827,共5页
目的以Micro-CT为研究工具评价Wave One镍钛器械对根管偏移的控制能力和中心定位能力。方法将40颗离体前磨牙随机分为A、B、C、D 4组,Wave One(A组)、机用Protaper(B组)、手用Protaper(C组)3组采用根向技术预备根管;手用不锈钢K锉(D组)... 目的以Micro-CT为研究工具评价Wave One镍钛器械对根管偏移的控制能力和中心定位能力。方法将40颗离体前磨牙随机分为A、B、C、D 4组,Wave One(A组)、机用Protaper(B组)、手用Protaper(C组)3组采用根向技术预备根管;手用不锈钢K锉(D组)按照标准技术预备根管。预备前、后均用Micro-CT扫描并对近中、远中根管壁(双根管以颊侧根管计)的厚度进行测量,然后利用Gambill提出的公式进行根管偏移和轴中心率的计算。结果根管预备后根管偏移量:A组小于其它3组(P<0.05);轴中心率:A组大于其它3组(P<0.05)。结论 Wave One在预备根管时,能够较好的维持根管原始走向,减少根管中心的偏移,具有临床使用价值。 展开更多
关键词 micro-CT 根管偏移 镍钛器械 根管预备
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“脑回形(cortex-like)”微弧氧化膜钛种植体成骨的Micro-CT分析 被引量:1
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作者 周宏志 李亚达 +4 位作者 刘唤 刘琳 王伟强 马国武 齐民 《口腔医学研究》 CAS CSCD 北大核心 2016年第7期676-680,共5页
目的:利用Micro-CT评价"大脑皮质"(cortex-like)形貌的二氧化钛膜层在初始稳定性和继发稳定性阶段的骨-种植体结合的能力。方法:实验组MAO(cortex-like)为"大脑皮质"形貌种植体,对照组SLA为具有同等规格的SLA形貌... 目的:利用Micro-CT评价"大脑皮质"(cortex-like)形貌的二氧化钛膜层在初始稳定性和继发稳定性阶段的骨-种植体结合的能力。方法:实验组MAO(cortex-like)为"大脑皮质"形貌种植体,对照组SLA为具有同等规格的SLA形貌的种植体,共计36颗,通过扫描电镜(SEM)等对材料表面进行表征,随机植入18只新西兰雄性兔的股骨髁部,分别于4周和8周处死取样,所得标本行Micro-CT扫描重建,分析MAO和SLA种植体表面的骨结合状况以及的骨小梁形态学参数。结果:类"大脑皮质"形貌氧化层由微米级沟槽和纳米级孔洞组成,沟槽相互交通,接触角(6.9±1.14)°,Micro-CT检测可见:随着骨结合时间的延长,骨体积分数(BV/TV)、骨小梁数量(Tb.N)、厚度(Tb.Th)、连接密度增加(Conn.Dn)均增加,结构模型指数(SMI)、骨小梁分离度(Tb.Sp)下降,第4周时,BV/TV,SMI组间比较差异存在统计学意义(P<0.05),第8周时,BV/TV、Tb.N、Tb.Sp、Conn.Dn值组间比较差异存在统计学意义(P<0.05),MAO高于SLA组。结论:"大脑皮质"(cortex-like)形貌的二氧化钛、具有双微层结构膜层,能促进种植体的骨结合的提升,是一种良好的种植体改性方法。 展开更多
关键词 钛种植体 微弧氧化 大脑皮质形貌 micro-CT 骨小梁
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Strengthening Mechanisms for Ti-and Nb-Ti-micro-alloyed High-strength Steels 被引量:4
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作者 Chuan-feng MENG Yi-de WANG +3 位作者 Ying-hui WEI Bin-qing SHI Tian-xie CUI Yu-tian WANG 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2016年第4期350-356,共7页
The strengthening mechanisms of hot-rolled steels micro alloyed with Ti (ST-TQS00) and Nh Ti (NT TQ500) were investigated by examining the microstructures of steels using optical microscope (OM), scanning elec t... The strengthening mechanisms of hot-rolled steels micro alloyed with Ti (ST-TQS00) and Nh Ti (NT TQ500) were investigated by examining the microstructures of steels using optical microscope (OM), scanning elec tron microscope (SEM) and transmission electron microscope (TEM). The results revealed ahnost no differences in the solute solution strengthening and fine grained strengthcning of the two steels, whereas the contributions of pre cipitation strengthening and dislocation strengthening were different for ST-TQ500 and NT-TQ500. The measured precipitation strengthening effect of ST-TQ500 was 88 MPa higher than that of NT-TQ500: this difference was pri marily attributed to the stronger precipitation effect of thc Ti-containing nanoscale particles. The dislocation strengthening effect of ST TQ500 was approximately 80 MPa lower than that of NT-TQ500. This is tbought to be related to differences in deformation behavior during the finishing rolling stage; the inhibition of dynamic recrystallization from Nb in NT-TQ500 (Nb-Ti) may lead to higher density of dislocations in the microstructure. 展开更多
关键词 micro alloying titanium NIOBIUM high-strength steel strengthening mechanism
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Fretting wear of micro-arc oxidation coating prepared on Ti6Al4V alloy 被引量:4
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作者 林修洲 朱旻昊 +2 位作者 郑健峰 罗军 莫继良 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第4期537-546,共10页
Micro-arc oxidation(MAO)coating was prepared on Ti6Al4V alloy surface and its characterizations were detected by Vickers hardness tester,profilometer,scanning electric microscope(SEM),energy dispersive X-ray spectrome... Micro-arc oxidation(MAO)coating was prepared on Ti6Al4V alloy surface and its characterizations were detected by Vickers hardness tester,profilometer,scanning electric microscope(SEM),energy dispersive X-ray spectrometer(EDX)and X-ray diffractometer(XRD).Fretting wear behaviors of the coating and its substrate were comparatively tested without lubrication under varied displacement amplitudes(D)in a range of 3-40μm,constant normal load(Fn)of 300 N and frequency of 5 Hz.The results showed that the MAO coating,presenting rough and porous surface and high hardness,mainly consisted of rutile and anatase TiO2 phases.Compared with the substrate,the MAO coating could shift the mixed fretting regime(MFR)and slip regime(SR)to a direction of smaller displacement amplitude.In the partial slip regime(PSR),lower friction coefficients and slight damage appeared due to the coordination of elastic deformation of contact zones.In the MFR,the friction coefficient of the coating was lower than that of the substrate as a result of the prevention of plastic deformation by the hard ceramic surface.With the increase of the displacement amplitude,the degradation of the MAO coating and the substrate increased extremely.The fretting wear mechanisms of the coating were abrasive wear and delamination with some material transfer of specimen.In addition,the coating presented a better property for alleviating fretting wear. 展开更多
关键词 titanium ALLOY micro-arc OXIDATION FRICTION and WEAR fretting WEAR
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Effects of Current Density on Microstructure of Titania Coatings by Micro-arc Oxidation 被引量:6
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作者 Yue Yang Hua Wu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2012年第4期321-324,共4页
In the present study, titania coatings were prepared under different current density conditions in micro-arc oxidation (MAO) process on titanium alloy in NaAlO2 solution. The aim of this work was to study the effect... In the present study, titania coatings were prepared under different current density conditions in micro-arc oxidation (MAO) process on titanium alloy in NaAlO2 solution. The aim of this work was to study the effects of current density on the microstructure of titania coatings. The morphology and phase composition of the coatings were investigated by field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD) and Raman spectra. The thickness and surface roughness of the coatings were characterized by confocal laser Scanning Microscopy (CLSM). The results showed that the coatings were composed of crystalline anatase and rutile phases of TiO2, and contain a network of evenly distributed small pores. It has also shown that an increase in current density leads to an increase in rutile content. 展开更多
关键词 titanium alloy micro-arc oxidation Raman spectra Current density
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Electrochemical Study of Diffusion Bonded Joints between Micro-duplex Stainless Steel and Ti6A14V Alloy 被引量:1
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作者 Shaily M.Bhola Sukumar Kundu +2 位作者 Rahul Bhola Brajendra Mishra Subrata Chatterjee 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2014年第2期163-171,共9页
In the present study, corrosion behavior of diffusion bonded joints formed between micro-duplex stainless steel (MDSS) and Ti6AI4V alloy (TiA) (at 900 ~C for 60 min under 4 MPa uniaxial pressure in vacuum) was i... In the present study, corrosion behavior of diffusion bonded joints formed between micro-duplex stainless steel (MDSS) and Ti6AI4V alloy (TiA) (at 900 ~C for 60 min under 4 MPa uniaxial pressure in vacuum) was investigated in 1 mol/L HCI and 1 mol/L NaOH solutions using various electrochemical measurements such as open circuit potential (OCP), electrochemical impedance spectroscopy (EIS) and potentiodynamic polarization (PD). For comparison, corrosion behavior of base metals (MDSS and TiA) was also evaluated. Bonded joint was characterized by light optical microscopy and scanning electron microscopy using backscattered electron mode. The layer wise σ phase and λ + FeTi phase mixture has been observed at the bond interface and the bond tensile strength and shear strength were - 556.4 MPa and -420.2 MPa, respectively. 展开更多
关键词 Diffusion bonding micro-duplex stainless steel titanium ahoy Corrosion EIS
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