多孔TiNi形状记忆合金是一种理想的人体硬组织植入物的替换材料.因为具有三维连通的开孔孔隙结构、独特的形状记忆效应、超弹性以及适宜的弹性模量与力学性能而受到关注.本文综述了多孔TiNi合金的制备工艺、孔隙特性、力学性能、耐蚀性能等方面的研究进展.并且展望了该合金今后的研究方向.
参考文献
[1] | Raterner B D.Biomaterials Science:an Introduction to Materials in Medicine[M].London,UK:Academic Press,1996:6. |
[2] | 崔福斋.生物材料[M].北京:科学出版社,1997:3. |
[3] | 俞耀庭.生物医用材料[M].天津:天津大学出版社,2000:5. |
[4] | Suchanek W.;Yoshimura M. .Processing and properties of hydroxyapatite-based biomaterials for use as hard tissue replacement implants [Review][J].Journal of Materials Research,1998(1):94-117. |
[5] | Gibson L J .[J].Journal of Biomechanics,1985,18:317. |
[6] | Li Y H et al.[J].Journal of Alloys and Compounds,2002,345:271. |
[7] | Wen C E et al.[J].Scripta Materialia,2001,45:1147. |
[8] | Itin V I et al.[J].Mater Charater,1994,32:179. |
[9] | Gyunter V E.Delay Law and New Class of Materials and Implants in Medicine[M].Northampton:STT,2000:2. |
[10] | Dambaev G Z.Porous Permeable Superelastic Implants in Surgery[M].Tomsk:Tomsk University Publishing House,1996:30. |
[11] | Li B Y et al.[J].Zeitschrift fur Metallkunde,2000,4:291. |
[12] | Li B Y et al.[J].Materials Science and Engineering A,2000,281:169. |
[13] | Zhu S L et al.[J].Materials Letters,2004,58:2369. |
[14] | Yuan B et al.[J].Materials Science and Engineering A,2006,438-440:657. |
[15] | Chu C L et al.[J].Materials Science and Engineering A,2005,392:106. |
[16] | Li B.Y.;Rong L.J. .SYNTHESIS OF POROUS Ni-Ti SHAPE-MEMORY ALLOYS BY SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS: REACTION MECHANISM AND ANISOTROPY IN PORE STRUCTURE[J].Acta materialia,2000(15):3895-3904. |
[17] | Li Y H et al.[J].Journal of Materials Science and Technology,2002,18:248. |
[18] | 陈存敬,郭志猛,贾成厂,殷声,薛润东.自蔓延高温合成TiNi多孔体合金[J].粉末冶金技术,2003(03):135-139. |
[19] | Li Y H et al.[J].Journal of Alloys and Compounds,2001,325:259. |
[20] | Li Y H et al.[J].Materials Science Forum,2002,394-395:511. |
[21] | 李永华.[A].北京:冶金工业出版社,2003:437. |
[22] | 张小明,殷为宏,王学成.SHE法制备高孔隙度TiNi合金[J].稀有金属材料与工程,2000(01):61-63. |
[23] | Zhang X M et al.[J].Materials Science Forum,2002,394-395:515. |
[24] | Li Y H et al.[J].Materials Letters,2002,57:448. |
[25] | Li Y H et al.[J].Materials Science and Engineering A,2003,363:356. |
[26] | Shabalovskaya SA .Surface, corrosion and biocompatibility aspects of Nitinol as an implant material.[J].Bio-medical materials and engineering,2002(1):69-109. |
[27] | Jiang HC;Rong LJ .Effect of hydroxyapatite coating on nickel release of the porous NiTi shape memory alloy fabricated by SHS method[J].Surface & Coatings Technology,2006(3/4):1017-1021. |
[28] | Kim H M et al.[J].Journal of Biomedical Materials Research,1996,32:409. |
[29] | Ayers RA;Simske SJ;Bateman TA;Petkus A;Sachdeva RL;Gyunter VE .Effect of nitinol implant porosity on cranial bone ingrowth and apposition after 6 weeks.[J].Journal of biomedical materials research, Part B. Applied biomaterials,1999(1):42-47. |
[30] | Rhalmi S et al.[J].Biomedical Materials & Engineering,1999,9:151. |
[31] | Simske S J et al.[J].Journal of Biomedical Materials Research,1995,29:527. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%