3D estructural analysis of bone plates, using the finite element method

被引:0
|
作者
Natera, Carolina Tovar [1 ]
Bendayán, José [1 ]
机构
[1] Centro de Bioingeniería, Inst. de Mat./Modelos Estructurales, Universidad Central de Venezuela, Caracas, Venezuela
来源
Boletin Tecnico/Technical Bulletin | 2001年 / 39卷 / 02期
关键词
Bending (deformation) - Computer simulation - Finite element method - Mathematical models - Stress concentration - Structural analysis - Structural loads;
D O I
暂无
中图分类号
学科分类号
摘要
The goals of this paper are to design two bone plates (dynamic compression plate and radius plate) and to evaluate stress distribution in an idealized geometrical model for a plate bone structures, due to representative tension, bending and torsion loads. A three dimensional model is generated to simulate the system: plate, bone and screws for the two bone plates designed. Loads cases were applied in these models, then boundary conditions and loads values were defined. The numerical analyses by finites element method were performed with a commercial finite element program (MSC/Nastran) and the stress distributions were obtained. The models showed that the plates behave within the elastic range for the load cases considered. It has been found that the critical regions of the model are: internal region of plate, inner screws hole region and plate bone interface. Torsion loads caused the highest stresses in the plate.
引用
收藏
页码:35 / 49
相关论文
共 50 条
  • [31] Degenerated 3D beam element for finite element analysis
    Tong, Yu-Qiang
    Xiang, Tian-Yu
    Zhao, Ren-Da
    Gongcheng Lixue/Engineering Mechanics, 2006, 23 (01): : 33 - 37
  • [32] Coupled analysis of 3D structural-acoustic problems using the edge-based smoothed finite element method/finite element method
    He, Z. C.
    Liu, G. R.
    Zhong, Z. H.
    Zhang, G. Y.
    Cheng, A. G.
    FINITE ELEMENTS IN ANALYSIS AND DESIGN, 2010, 46 (12) : 1114 - 1121
  • [33] Biomechanical assessment and 3D finite element analysis of the treatment of tibial fractures using minimally invasive percutaneous plates
    Hu, Xin-Jia
    Wang, Hua
    EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2017, 14 (02) : 1692 - 1698
  • [34] A 3D finite element ALE method using an approximate Riemann solution
    Chiravalle, V. P.
    Morgan, N. R.
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2017, 83 (08) : 642 - 663
  • [35] 3D analysis of a quasi circular microstrip antenna by finite element method
    Bourry, M
    Drissi, M
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2006, 48 (04) : 635 - 639
  • [36] Eddy Current Analysis of Induction Machine by 3D Finite Element Method
    Manna, Manpreet Singh
    Marwaha, Sanjay
    Marwaha, Anupma
    2008 JOINT INTERNATIONAL CONFERENCE ON POWER SYSTEM TECHNOLOGY (POWERCON) AND IEEE POWER INDIA CONFERENCE, VOLS 1 AND 2, 2008, : 1101 - +
  • [37] Development of an inverse analysis method coupled with a 3D finite element model
    Forestier, R
    Chastel, Y
    Massoni, E
    MATERIALS PROCESSING AND DESIGN: MODELING, SIMULATION AND APPLICATIONS, PTS 1 AND 2, 2004, 712 : 2149 - 2154
  • [38] The scaled boundary finite element method for the analysis of 3D crack interaction
    Hell, Sascha
    Becker, Wilfried
    JOURNAL OF COMPUTATIONAL SCIENCE, 2015, 9 : 76 - 81
  • [39] Finite element analysis of a micromechanical model of bone and a new 3D approach to validation
    Evans, S. P.
    Parr, W. C. H.
    Clausen, P. D.
    Jones, A.
    Wroe, S.
    JOURNAL OF BIOMECHANICS, 2012, 45 (15) : 2702 - 2705
  • [40] 3D Finite-Element Modelling of Drilling Cortical Bone: Temperature Analysis
    Alam, Khurshid
    Khan, Mushtaq
    Silberschmidt, Vadim V.
    JOURNAL OF MEDICAL AND BIOLOGICAL ENGINEERING, 2014, 34 (06) : 618 - 623