Numerical investigation of the role of osteopontin on the mechanical strength of biological composites

被引:0
|
作者
Lai, Zheng Bo [1 ]
机构
[1] Queensland Univ Technol, Sci & Engn Fac, Sch Chem Phys & Mech Engn, Brisbane, Qld, Australia
关键词
biological material; biological composite; biomechanics; mechanical property; molecular dynamics; finite element; MOLECULAR-DYNAMICS SIMULATION; PARTICLE MESH EWALD; MATRIX PROTEINS; BONE; BEHAVIOR; ENERGY; ADSORPTION; FRACTURE; FIBRILS; MINERALIZATION;
D O I
10.1080/10255842.2019.1647534
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The material components and configurations inside biological materials (e.g. bone and tooth) are quite dissimilar compared to conventional engineering materials. Besides hydroxyapatite minerals and collagen proteins, non-collagenous proteins such as osteopontin are also a very important component in bone. The aim of this paper is to study the role of osteopontin on the mechanical strength of biological composites. The MD simulations were performed to investigate the failure energy of osteopontin in two different directions, i.e. the direction normal to surface (thickness direction) and the direction tangential to surface (interface direction). The FE simulations were then performed to investigate the effects of failure energy in different directions on biological composites. The results show that the failure energy of osteopontin is higher in the interface direction. Significant improvement in the mechanical behaviour of biological composites is also found with the increased failure energy in the interface direction. Contrarily, although lower failure energy of osteopontin is observed in the thickness direction, but it is also found that the mechanical behaviour of biological composites does not greatly affected by the failure energy in the thickness direction. The numerical investigation provides important insights into how the osteopontin affects the mechanical behaviour of biological composites.
引用
收藏
页码:1186 / 1196
页数:11
相关论文
共 50 条
  • [1] Contrasting role of carbon nanofillers in electrical conduction and mechanical strength of epoxy composites: an investigation
    Aradhya, Rashmi
    Venkataramanaiah, Poornima
    Jagannathan, Sundara Rajan
    INTERNATIONAL JOURNAL OF POLYMER ANALYSIS AND CHARACTERIZATION, 2022, 27 (05) : 346 - 358
  • [2] Numerical investigation of the role of masonry typology on shear strength
    Zhang, Shenghan
    Beyer, Katrin
    ENGINEERING STRUCTURES, 2019, 192 : 86 - 102
  • [3] A numerical investigation of the effect of particle clustering on the mechanical properties of composites
    Segurado, J
    González, C
    Llorca, J
    ACTA MATERIALIA, 2003, 51 (08) : 2355 - 2369
  • [4] Mechanical characterization of basalt woven fabric composites: numerical and experimental investigation
    Valentino, Piergiorgio
    Sgambitterra, Emanuele
    Furgiuele, Franco
    Romano, Marco
    Ehrlich, Ingo
    Gebbeken, Norbert
    FRATTURA ED INTEGRITA STRUTTURALE, 2014, 8 (28): : 1 - 11
  • [5] Numerical investigation of mechanical properties of hybrid fiber reinforced polymer composites
    Kumar, A. Mohan
    Aiswarya, N. Dimple
    Ashokavel, S.
    Boopathi, M.
    MATERIALS TODAY-PROCEEDINGS, 2022, 52 : 2255 - 2263
  • [6] Experimental and numerical investigation on the size effect of interlaminar shear strength for thick composites
    Hao, Ziqing
    Wang, Xiaoyu
    Ke, Hongjun
    Wei, Gaojian
    Kardomateas, George
    Liu, Liu
    COMPOSITE STRUCTURES, 2025, 353
  • [7] Experimental and numerical investigation of stress concentration and strength prediction of carbon/epoxy composites
    Ozaslan, Emre
    Acar, Biilent
    Guler, Mehmet A.
    ECF22 - LOADING AND ENVIRONMENTAL EFFECTS ON STRUCTURAL INTEGRITY, 2018, 13 : 535 - 541
  • [8] Numerical investigation of the mechanical behaviour of shape memory bulk metallic glass composites
    Yan, Wenyi
    Tilvawala, Gopesh
    Kan, Qianhua
    THIRD INTERNATIONAL CONFERENCE ON SMART MATERIALS AND NANOTECHNOLOGY IN ENGINEERING, 2012, 8409
  • [9] Mechanical Analysis of Woven Composites Through Experimental Investigation and Multiscale Numerical Simulation
    Fang, Guangqiang
    Qu, Peng
    Cao, Zhengli
    Shi, Feizhou
    FIBERS AND POLYMERS, 2022, 23 (05) : 1440 - 1453
  • [10] Mechanical Analysis of Woven Composites Through Experimental Investigation and Multiscale Numerical Simulation
    Guangqiang Fang
    Peng Qu
    Zhengli Cao
    Feizhou Shi
    Fibers and Polymers, 2022, 23 : 1440 - 1453