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Preparation and bioactive surface modification of the microwave sintered porous Ti-15Mo alloys for biomedical application 被引量:5
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作者 Jilin Xu Jinlong Zhang +3 位作者 Luzi Bao Tao Lai Junming Luo Yufeng Zheng 《Science China Materials》 SCIE EI CSCD 2018年第4期545-556,共12页
Biomedical porous Ti-15 Mo alloys were prepared by microwave sintering using ammonium hydrogen carbonate(NH4HCO3) as the space holder agent to adjust the porosity and mechanical properties. The porous Ti-15 Mo alloy... Biomedical porous Ti-15 Mo alloys were prepared by microwave sintering using ammonium hydrogen carbonate(NH4HCO3) as the space holder agent to adjust the porosity and mechanical properties. The porous Ti-15 Mo alloys are dominated by β-Ti phase with a little α-Ti phase, and the proportion of α and β phase has no significant difference as the NH4HCO3 content increases. The porosities and the average pore sizes of the porous Ti-15 Mo alloys increase with increase of the contents of NH4HCO3, while all of the compressive strength, elastic modulus and bending strength decrease. However, the compressive strength, bending strength and the elastic modulus are higher or close to those of natural bone. The surface of the porous Ti-15 Mo alloy was further modified by hydrothermal treatment, after which Na2Ti6O13 layers with needle and flake-like clusters were formed on the outer and inner surface of the porous Ti-15 Mo alloy. The hydrothermally treated porous Ti-15 Mo alloy is completely covered by the Ca-deficient apatite layers after immersed in SBF solution for 14 d, indicating that it possesses high apatiteforming ability and bioactivity. These results demonstrate that the hydrothermally treated microwave sintered porous Ti-15 Mo alloys could be a promising candidate as the bone implant. 展开更多
关键词 porous Ti-15Mo alloy microwave sintering hydrothermal treatment apatite-forming ability mechanical property
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Carbon Nanotube Coating on Titanium Substrate Modified with TiO_2 Nanotubes
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作者 白玉 PARK Ilsong +4 位作者 BAE Taesung KIM Kyounga WATARI Fumio UO Motohiro LEE Minho 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第5期867-871,共5页
A combination of carbon nanotubes (CNTs) and titanium (Ti) modified with TiO2 nanotubes (TiO2 NTs) was fulfilled with the aim of improving bioactivity of Ti implant.First,well-ordered TiO2 NTs were prepared by t... A combination of carbon nanotubes (CNTs) and titanium (Ti) modified with TiO2 nanotubes (TiO2 NTs) was fulfilled with the aim of improving bioactivity of Ti implant.First,well-ordered TiO2 NTs were prepared by the electrochemical anodization of Ti in an ethylene glycol electrolyte containing 1 wt% NH4F and 10 wt% H2O at 20 V for 50 min,followed by annealing.Then,the carboxylated CNTs were coated onto the TiO2 NTs using electrophoretic deposition (EPD) technique.The growth of hydroxyapatite (HA) on the samples was investigated by soaking them in simulated body fluid (SBF).The result showed the CNTs-coated Ti with the modification of TiO2 NTs (CNTs-TiO2 NTs) was more efficient to induce HA formation than the CNTs-coated smooth Ti (CNTs-Ti).The vitro cell response was evaluated using osteoblast cells (MC3T3-E1).The good cell proliferation and strong cell adhesion could be obtained on the CNTs-TiO2 NTs.These results indicated that CNT coating on the Ti modified with TiO2 NTs could be potentially useful for the periodontal ligament combination on dental implants. 展开更多
关键词 carbon nanotubes TiO2 nanotubes apatite-forming ability cell adhesion
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钛表面原位自组装TiO_2空心球及生物活性研究 被引量:7
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作者 肖帆 柳星竹 +2 位作者 江光强 陈劲宇 姜珍兰 《浙江工业大学学报》 CAS 北大核心 2016年第5期580-583,共4页
以单分散聚苯乙烯(PS)球为模板,聚苯乙烯磺酸钠(PSS)为表面活性剂,硫酸氧钛为前驱液,通过水解-溶胶法在低温条件下实现了自组装TiO_2微球在钛基体表面的沉积,然后将其煅烧去除PS球,得到空心TiO_2球,将此基体浸入模拟体液(SBF)中来观察... 以单分散聚苯乙烯(PS)球为模板,聚苯乙烯磺酸钠(PSS)为表面活性剂,硫酸氧钛为前驱液,通过水解-溶胶法在低温条件下实现了自组装TiO_2微球在钛基体表面的沉积,然后将其煅烧去除PS球,得到空心TiO_2球,将此基体浸入模拟体液(SBF)中来观察表面磷灰石的生长情况.通过XRD和SEM对表面物相组成和微观形貌分析可知:TiO_2球平均粒径为1.2μm,分散性较好,与基体有良好的结合力,且该基体表面TiO_2在1天内就能够诱导羟基磷灰石的生长,说明其具有良好的生物活性.此外,纳米结构TiO_2的组成、形貌和结构可以通过调整组装温度和PS质量浓度来实现可控. 展开更多
关键词 TiO2球 自组装 磷灰石沉积能力
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Ti-13Nb-13Zr表面多孔梯度合金的制备及性能研究
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作者 刘龙 张玉勤 +1 位作者 孟增东 蒋业华 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2021年第11期4015-4022,共8页
利用放电等离子烧结(SPS)技术制备了中间致密、表面多孔的Ti-13Nb-13Zr梯度合金,研究了烧结温度(950~1200℃)对梯度合金组织演变、界面结合、表面孔隙特征、力学及体外矿化性能的影响。结果表明:随烧结温度的逐步上升,梯度合金中α-Ti... 利用放电等离子烧结(SPS)技术制备了中间致密、表面多孔的Ti-13Nb-13Zr梯度合金,研究了烧结温度(950~1200℃)对梯度合金组织演变、界面结合、表面孔隙特征、力学及体外矿化性能的影响。结果表明:随烧结温度的逐步上升,梯度合金中α-Ti相减少,β-Ti相增多,组织逐渐连续均匀分布,晶粒得到细化,中间基体与多孔层界面呈连续过渡且形成良好的冶金结合,表面多孔层孔隙率下降而平均孔径减小;梯度合金抗压强度值随烧结温度升高呈先增大后减小趋势,而弹性模量值变化不大;综合分析,烧结温度为1150℃时,制备的表面多孔梯度合金不仅具有良好的力学性能(抗压强度893 MPa,弹性模量16 GPa),而且具有适宜的孔隙参数(孔隙率34.7%,平均孔径340.9μm)及优异的类骨磷灰石形成能力与体外矿化性能。 展开更多
关键词 Ti-13Nb-13Zr梯度合金 烧结温度 组织演变 力学性能 磷灰石形成能力
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