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等离子喷涂生物活性硅灰石涂层研究(英文)

  • 刘宣勇 ,
  • 丁传贤
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  • 中国科学院上海硅酸盐研究所, 上海 200050
刘宣勇: 在博士研究生期间发表论文15 篇, 其中以第一作者在国外SCI 收录期刊发表11 篇, 申请国家发明专利1 项, 荣获2002 年度中国科学院院长奖学金优秀奖、2002 年度上海科技启明星, 迄今已在国内外期刊上发表学术论文40 余篇.导师丁传贤研究员: 主要从事材料表面和界面研究.

收稿日期: 2004-09-17

  网络出版日期: 2005-07-15

Study on Plasma Sprayed Bioactive Wollastonite Coatings

  • LIU Xuan-Yong ,
  • DING Chuan-Xian
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  • Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China

Received date: 2004-09-17

  Online published: 2005-07-15

Supported by

supported by Shangha iScienceand Technology R&Dfund (02QE14052,03JC14074),National Basic Research Fund(G19990 64701),National Natural Science Found ation of China (50102008)

摘要

采用等离子喷涂技术,将硅灰石陶瓷沉积于钛合金基体表面,制备了硅灰石涂层,对涂层的工艺、结构和性能作了研究.在此基础上,又制备了硅灰石TiO2 复合涂层、硅灰石ZrO2 复合涂层和硅酸二钙涂层,并研究了它们的结构和性能.研究结果证实:等离子喷涂硅灰石涂层、硅酸二钙涂层以及W7T3、W3Z7、W7Z3三种复合涂层都具有良好的生物活性又与钛合金基体有较高的结合强度,是较有应用前途的骨替换候选材料

本文引用格式

刘宣勇 , 丁传贤 . 等离子喷涂生物活性硅灰石涂层研究(英文)[J]. 中国科学院大学学报, 2005 , 22(4) : 518 -523 . DOI: 10.7523/j.issn.2095-6134.2005.4.019

Abstract

A novel bioact ive ceramic, wollastonite, was deposited onto T-i 6A-l 4V substrate using plasma spraying technology for improving its bioact ivity and biocompatibility. The process, structures and properties of plasma sprayed wollastonite coat ing were examined using scanning electron microscopy, transmission electron microscopy, X-ray diffraction, infrared spectroscopy and etc. In order to upgrade the propert ies of wollastonite coating, the wollastonitePTiO2 and wollastonitePZrO2 composite coatings and dicalcium silicate coat ing are also prepared and examined. The results showed that wollastonite and its composite coatings with certain content of wollastonite possessed good bioactivity, biocompatibility as well as t ight bonding to T-i 6A-l 4V substrate, indicating they may be candidates for bone graft in human body.

参考文献

[1] Liu XY, Ding CX. Characterizat ion of plasma sprayed wollastonite powder and coating. Surface & Coatings Technology, 2002, 153(2-3) : 173~177

[2] Liu XY, Ding CX. Thermal properties and microstructure of a plasma sprayed wollastonite coat ing. J. Thermal Spray Technol. 2002, 11(3) : 375~379

[3] Liu XY, Ding CX. Phase compositions and microstructure of plasma sprayed wollastonite coat ing. Surface & Coatings Technology, 2001, 141(2-3) : 269~274

[4] Liu XY, Ding CX. Apatite formed on the surface of plasma sprayed wol lastonite coating immersed in simulated body fluid. Biomaterial s, 2001, 22(14) : 2007~2012

[5] Liu XY, Ding CX. Reactivity of plasma sprayed wollast onit e in simulated body fluid. J. Biomed. Mater. Res. 2002, 59(2) : 259~264.

[6] Liu XY, Ding CX, Chu Paul K. Mechanism of Apatite Format ion on Wollastonit e Coat ings in Simulated Body Fluids. Biomaterial s, 2004, 25(10) :1755~1761

[7] Liu XY, Ding CX. Morphology of apatite formed on surface of wollastonite coat ing soaked in simulat e body fluid. Materials Letters, 2002, 57(3) :652~655

[8] Liu XY, Ding CX. Bioactivity of plasma sprayedwollastonite coat ings in simulated body fluid. Materials Science Forum, 2003, 423- 425: 331~334

[9] Liu XY, Ding CX. Plasma sprayed wollastonitePTiO2 composit e coatings on titanium alloys. Biomaterials, 2002, 23(20) : 4065~4077

[10] Liu XY, Ding CX. Bioactivity of Plasma sprayed wollastonitePZrO2 composit e coat ing. Surface & Coatings Technology, 2003, 172: 270~278

[11] Liu XY, Tao SY, Ding CX. Bioact ivity of plasma sprayed dicalcium silicat e coating. Biomaterials, 2002, 23(3) : 963~968

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