期刊文献+

金属生物材料支架的微结构拓扑优化设计及选区激光熔化制造(英文) 被引量:11

Topology optimization of microstructure and selective laser meltingfabrication for metallic biomaterial scaffolds
下载PDF
导出
摘要 生物材料支架的精确设计和制造是骨组织工程系统研究的基础。生物材料支架应该同时满足大孔隙率和与骨组织匹配的力学性能要求。这两个目标相互制约,大的孔隙率会降低其力学性能。利用拓扑优化的方法,在体积分数的约束下,寻求刚度最大的最优材料分布微结构。建立算法,得到了不同体积分数的2D和3D最优微结构,并提取3D拓扑优化的结果,然后将其转化为STL格式的CAD模型文件。微结构在三维方向整列成支架结构,通过选区激光熔化方法制造30%(体积分数)的Ti支架样品。从SEM图像看出,支架样品的结构和孔径与CAD模型基本一致,500μm微结构单元的平均孔径为231μm。复杂形状金属生物材料支架的精确制造证实了选区激光熔化技术在金属生物医学材料制造中的可行性。 The precise design and fabrication of biomaterial scaffolds is necessary to provide a systematic study for bone tissue engineering. Biomaterial scaffolds should have sufficient stiffness and large porosity. These two goals generally contradict since larger porosity results in lower mechanical properties. To seek the microstructure of maximum stiffness with the constraint of volume fraction by topology optimization method, algorithms and programs were built to obtain 2D and 3D optimized microstructure and then they were transferred to CAD models of STL format. Ti scaffolds with 30% volume fraction were fabricated using a selective laser melting (SLM) technology. The architecture and pore shape in the metallic biomaterial scaffolds were relatively precise reproduced and the minimum mean pore size was 231μm. The accurate fabrication of intricate microstructure has verified that the SLM process is suitable for fabrication of metallic biomaterial scaffolds.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第10期2554-2561,共8页 中国有色金属学报(英文版)
基金 Project (51275179) supported by the National Natural Science Foundation of China Project (2010A090200072) supported by Industry,University and Research Institute Combination of Ministry of Education, Ministry of Science and Technology and Guangdong Province,China Project (2012M511797) supported by China Postdoctoral Science Foundation Project (2012ZB0014) supported by FundamentalResearch Funds for the Central Universities of China
关键词 拓扑优化 选区激光熔化 微结构 金属生物材料支架 topology optimization selective laser melting (SLM) microstructure metallic biomaterial scaffolds
  • 相关文献

参考文献23

  • 1van CLEYNENBREUGEL T, van OOSTERWYCK H, VANDER SLOTEN J, SCHROOTEN J. Trabecular bone scaffolding using a biomimetic approach [J]. Journal of Materials Science: Materials in Medicine, 2002, 13: 1245-1239.
  • 2YOO D J. Computer-aided porous scaffold design for tissue engineering using triply periodic minimal surfaces [J]. International Journal of Precision Engineering and Manufacturing, 2011, 12(1): 61-71.
  • 3LIN L, HU Q, HUANG X, XU G. Design and fabrication of bone tissue engineering scaffolds via rapid prototyping and CAD [J]. Journal of Rare Earths, 2007, 25: 379-383.
  • 4HOLLISTER S J, LIN C Y. Computational design of tissue engineering scaffolds [J]. Computer Methods in Applied Mechanics and Engineering, 2007, 196:2991-2998.
  • 5KANG H, L1N C Y, HOLLISTER S J. Topology optimization of three dimensional tissue engineering scaffold architectures tbrprescribed bulk modulus and diffusivity [J]. Structural and Multidisciplinary Optimization, 2010, 42: 633-644.
  • 6OH I H, NOMURA N, MASAHASHI N, HANADA S. Mechanical properties of porous titanium compacts prepared by powder processing [J]. Scripta Materialia, 2003, 49:1197-1202.
  • 7BRAM M. High-porosity titanium, stainless steel, and superalloy parts [J]. Advanced Engineering Materials, 2000, 2:196-199.
  • 8MIYAO R, OMORI M, WATAR/F, YOKOYAMA A, MATSUNO H, HIRAI T, KAWASAKI T. Fabrication of functionally graded implants by spark plasma sintering and their properties [J]. Journal of the Japan Society of Powder and Powder Metallurgy, 2000, 47: 1239-1242.
  • 9BOBYN J D, STACKPOOL G J, HACKING S A, TANZER M, KRYGIER J J. Characteristics of bone ingrowth and interface mechanics of a new porous tantalum biomaterial [J]. Journal of Bone & Joint Surgery, 1999, 81: 907-914.
  • 10GUY W, YONG M S, TAY B Y, LIM C S. Synthesis and bioactivity of porous Ti alloy prepared by foaming with Till2 [J]. Materials Science and Engineering C, 2009, 29(5): 1515-1520.

同被引文献185

引证文献11

二级引证文献66

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部