全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

短切碳纤维/羟基磷灰石生物复合材料的制备及性能

, PP. 105-110

Keywords: 短切Cf,羟基磷灰石,氧化处理,生物复合材料,力学性能

Full-Text   Cite this paper   Add to My Lib

Abstract:

以短切碳纤维为增强相,采用原位复合法制备短切碳纤维(Cf)/羟基磷灰石(HA)生物复合材料。为提高材料的界面结合,对Cf表面进行氧化处理。对纯HA结构、Cf表面以及复合材料断口形貌分别采用XRD、FTIR、SEM进行分析表征;采用万能试验机对复合材料进行力学性能测试。结果表明:氧化处理后Cf表面变粗糙,有羟基羧基官能团出现;Cf质量分数为3%时Cf/HA复合材料相对密度最大,力学性能最好,弯曲强度和弯曲模量分别约为130MPa和36GPa。Cf/HA复合材料断口SEM照片表明,Cf质量分数低于6%时能够实现在HA基体中的均匀分布。

References

[1]  马 捷, 陈晓东, 戴力扬. 人工骨移植替代物应用研究与进展 [J]. 生物骨科材料与应用研究, 2007, 4(2): 30-33. Ma Jie, Chen Xiaodong, Dai Liyang. Advances of research on replacer of artificial bone [J]. Orthopaedic Biomechanics Materials and Clinical Study, 2007, 4(2): 30-33.
[2]  Erbe E M, Marx J G, Clineff T D, et al. Potential of an ultraporous beta-tricalcium phosphate synthetic cancellous bone void filler and bone marrow aspirate composite graft [J]. Eur Spine, 2001, 10(S2): 141-146.
[3]  Bauer T W, Muschler G F. Bone graft materials [J]. Clin Orthop and Rel Res, 2000, 371: 10-27.
[4]  Murray M G S, Wang J. An improvement in processing of hydroxyapatite ceramics [J]. J Mater Sci, 1995, 30(20): 3061-3071.
[5]  Reisel A D, Berroth K, Neubauer R, et al. Unreinforced and carbon fiber reinforced hydroxyapatite: Resistance against microabrasion [J]. European Ceramic Society, 2004(24): 2131-2139.
[6]  Fidancevska E, Ruseska G, Bossert J, et al. Fabrication and characterization of porous bio-ceramic composite based on hydroxyapatite and titania [J]. Materials Chemistry and Physics, 2007, 103: 95-100.
[7]  曹丽云, 曾丽平, 黄剑锋, 等. 短切Cf增强HA/PMMA 生物复合材料的制备及性能[J]. 复合材料学报, 2009, 26(2): 139-142. Cao Liyun, Zeng Liping, Huang Jianfeng, et al. Preparation and property of short carbon fiber reinforced HA/PMMA bio-composite [J]. Acta Materiae Compositae Sinica, 2009, 26(2): 139-142.
[8]  王 静, 李慕勤, 温广武. 短切Cf增强羟基磷灰石生物材料的制备与性能 [J]. 稀有金属材料工程, 2007, 36(2): 86-89. Wang Jing, Li Muqin, Wen Guangwu. Perparation and properties of short carbon fiber reinforced hydroxyapatite bio-composite [J]. Rare Metal Materials and Engineering, 2007, 36(2): 86-89.
[9]  曾丽平, 曹丽云, 黄剑锋, 等. 表面改性对Cf/HA-PMMA 生物复合材料的结构及性能影响 [J]. 复合材料学报, 2009, 26(5): 68-73. Zeng Liping, Cao Liyun, Huang Jianfeng, et al. Influence of surface modification on microstructure and properties of Cf/HA-PMMA hybrid bio-composites [J]. Acta Materiae Compositae Sinica, 2009, 26(5): 68-37.
[10]  戴红莲, 李世普, 贺建华. Cf增强α-TCP/TTCP 骨水泥的研究 [J]. 无机材料学报, 2004, 19(5): 1025-1030. Dai Honglian, Li Shipu, He Jianhua, et al. Carbon fiber reinforced α-TCP/TTCP bone cement [J]. Journal of Inorganic Materials, 2004, 19(5): 1025-1030.
[11]  储成林, 朱景川, 尹钟大. 羟基磷灰石生物复合材料研究进展 [J]. 材料导报, 1999, 13(2): 51-54. Chu Chenglin, Zhu Jingchuan, Yin Zhongda. Advancement of hydroxyapatite biological composites [J]. Materials Review, 1999, 13(2): 51-54.
[12]  沈序辉, 宋晨路, 沈 鸽, 等. 有机-羟基磷灰石复合骨替代材料 [J]. 材料科学与工程, 1999, 17(4): 85-90. Shen Xuhui, Song Chenlu, Shen Ge, et al. Organic-hydroxyapatite composites used for bone replacement and repair [J]. Materials Science & Engineering, 1999, 17(4): 85-90.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133