Impact behaviors of poly-lactic acid based biocomposite reinforced with unidirectional high-strength magnesium alloy wires

被引:0
作者
Xuan Li
Chao Guo
Xiaokai Liu
Lei Liu
Jing Bai
Feng Xue
Pinghua Lin
Chenglin Chu
机构
[1] SchoolofMaterialsScienceandEngineeringandJiangsuKeyLaboratoryforAdvancedMetallicMaterials,SoutheastUniversity
关键词
Impact property; Magnesium alloy wire; Poly-lactic acid; Composite; FEM;
D O I
暂无
中图分类号
R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
A novel poly-lactic acid(PLA) based biocomposite reinforced with unidirectional high-strength magnesium alloy(Mg-alloy) wires for bone fracture fixation was fabricated by hot-compressing process. The macroscopical and microscopical impact behaviors of the biocomposite were investigated using impact experiments and finite element method(FEM), respectively. The results indicated that the biocomposite had favorable impact properties due to the plastic deformation behavior of Mg-alloy wires during impact process. While the content of Mg-alloy wires reached20 vol%, the impact strength of the composite could achieve 93.4 k J/m2, which is approximate 16 times larger than that of pure PLA fabricated by the same process. According to FEM simulation results, the complete destruction life of the composites during impact process increased with increasing volume fraction of Mg-alloy wires, indicating a high impact-bearing ability of the composite for bone fracture fixation.Simultaneously, the energy absorbed by Mg-alloy wires in the composites had a corresponding increase. In addition, it denoted that the impact properties of the composites are sensitive to the initial properties of the matrix material.
引用
收藏
页码:472 / 478
页数:7
相关论文
共 21 条
[1]  
In vitro Study on Biodegradable AZ31 Magnesium Alloy Fibers Reinforced PLGA Composite[J]. Y.H.Wu,N.Li,Y.Cheng,Y.F.Zheng,Y.Han.Journal of Materials Science & Technology. 2013(06)
[2]   Biodegradable Materials for Bone Repairs:A Review [J].
Lili Tan ;
Xiaoming Yu ;
Peng Wan ;
Ke Yang .
JournalofMaterialsScience&Technology, 2013, 29 (06) :503-513
[3]  
Biodegradable metals[J] . Y.F. Zheng,X.N. Gu,F. Witte.Materials Science & Engineering R . 2014
[4]  
Application of Lagrange multipliers for coupled problems in fluid and structural interactions[J] . Ralf Unger,Matthias C. Haupt,Peter Horst.Computers and Structures . 2007 (11)
[5]  
Nano-composite of poly( l -lactide) and surface grafted hydroxyapatite: Mechanical properties and biocompatibility[J] . Zhongkui Hong,Peibiao Zhang,Chaoliang He,Xueyu Qiu,Aixue Liu,Li Chen,Xuesi Chen,Xiabin Jing.Biomaterials . 2005 (32)
[6]   Dynamic crashing and impact energy absorption of 3D braided composite tubes [J].
Zeng, T ;
Fang, DN ;
Lu, TJ .
MATERIALS LETTERS, 2005, 59 (12) :1491-1496
[7]  
Impact crushing of particle–particle compounds—experiment and simulation[J] . W. Schubert,M. Khanal,J. Tomas.International Journal of Mineral Processing . 2004 (1)
[8]  
The finite element analysis of composite laminates and shell structures subjected to low velocity impact[J] . Shiuh-Chuan Her,Yu-Cheng Liang.Composite Structures . 2004 (1)
[9]  
Processing, annealing and sterilisation of poly- l -lactide[J] . N.A Weir,F.J Buchanan,J.F Orr,D.F Farrar,A Boyd.Biomaterials . 2003 (18)
[10]  
An experimental investigation of shock wave propagation in periodically layered composites[J] . Shiming Zhuang,Guruswami Ravichandran,Dennis E. Grady.Journal of the Mechanics and Physics of Solids . 2002 (2)