Experimental and Numerical Investigations of Tensile Properties of SiC Particle-Reinforced Composites

被引:0
|
作者
Li, Datao [1 ]
Gao, Yingrong [1 ]
Wei, Xiahui [1 ]
Wang, Binhua [1 ]
机构
[1] Changan Univ, Key Lab Rd Construct Technol & Equipment, MOE, Xian 710064, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
finite element modeling; particle-reinforced composites; representative volume element; tensile strength; MECHANICAL-PROPERTIES; VOLUME FRACTION; BEHAVIOR; SIMULATIONS; FABRICATION; PACKING;
D O I
10.1002/adem.202401455
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, experiments and finite element modeling (FEM) are performed to study the tensile mechanical properties of SiC particle-reinforced 6061 Al-matrix composites (SiCp/6061Al) at various volume fractions (VFs) of SiCp. The Young's modulus, yield strength, and tensile strength of SiCp/6061Al display an overall upward trend with the increment of the VF of SiCp. The fracture analysis results demonstrate that the fracture of SiCp/6061Al is a hybrid of matrix fracture, reinforcement fracture, and interface debonding. An algorithm is developed to construct the mesostructure of particle-reinforced composites, based on the random sequential absorption algorithm. The VFs of the particles of the representative volume element (RVE) model constructed using the novel algorithm are as high as 42%. The tensile mechanical properties of SiCp/6061Al are predicted by replacing the irregular particle reinforcements in SiCp/6061Al with spherical particles in the RVE model. Comparisons reveal that the stress-strain curves obtained via experiment and FEM are highly consistent in the elastic-plastic stage, which verifies the effectiveness and rationality of the novel algorithm. In this study, tensile experiments and finite element simulations are conducted to evaluate the tensile mechanical properties and fracture modes of SiC particle-reinforced 6061 Al-matrix composites with various volume fractions of SiCp.image (c) 2024 WILEY-VCH GmbH
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Compressive Properties of SiC Particle-Reinforced Aluminum Matrix Composites Under Repeated Impact Loading
    D. F. Cao
    L. S. Liu
    Q. W. Liu
    S. X. Li
    Strength of Materials, 2015, 47 : 61 - 67
  • [22] Tribological properties of SiC whisker and molybdenum particle-reinforced aluminum matrix composites under lubrication
    Xue, QJ
    Bai, MW
    WEAR, 1996, 195 (1-2) : 66 - 73
  • [23] Microstructure and thermal properties of binary ceramic particle-reinforced aluminum matrix composites with SiC/LAS
    Shihao Zhang
    Qinglin Hou
    Zhixiang Fu
    Weili Zhang
    Haiyun Jiang
    Journal of Materials Science, 2022, 57 : 1796 - 1809
  • [24] Microstructure and thermal properties of binary ceramic particle-reinforced aluminum matrix composites with SiC/LAS
    Zhang, Shihao
    Hou, Qinglin
    Fu, Zhixiang
    Zhang, Weili
    Jiang, Haiyun
    JOURNAL OF MATERIALS SCIENCE, 2022, 57 (03) : 1796 - 1809
  • [25] Numerical identification of properties of particle-reinforced composite materials
    Kushnevsky, V
    MECHANICS OF COMPOSITE MATERIALS, 1998, 34 (03) : 279 - 284
  • [26] COMPRESSIVE PROPERTIES OF SiC PARTICLE-REINFORCED ALUMINUM MATRIX COMPOSITES UNDER REPEATED IMPACT LOADING
    Cao, D. F.
    Liu, L. S.
    Liu, Q. W.
    Li, S. X.
    STRENGTH OF MATERIALS, 2015, 47 (01) : 61 - 67
  • [27] Numerical identification of properties of particle-reinforced composite materials
    V. Kushnevsky
    Mechanics of Composite Materials, 1998, 34 : 279 - 284
  • [28] Experimental Investigations on the Mechanical Characteristics of Natural Fiber Particle-Reinforced Polymer Composites under Cryogenic Environment
    Alshgari, Razan A.
    Anandaram, Harishchander
    Kistan, A.
    Nisha, N.
    Vel, V. M.
    Anitha, G.
    Wabaidur, Saikh Mohammad
    Islam, M. A.
    Alemayehu, Agonafir
    JOURNAL OF NANOMATERIALS, 2022, 2022
  • [29] FATIGUE PROPERTIES OF PARTICLE-REINFORCED METAL-MATRIX COMPOSITES
    HOCHREITER, E
    PANZENBOCK, M
    JEGLITSCH, F
    INTERNATIONAL JOURNAL OF FATIGUE, 1993, 15 (06) : 493 - 499
  • [30] Effect of overaging and particle size on tensile deformation and fracture of particle-reinforced aluminum matrix composites
    J. J. Williams
    G. Piotrowski
    R. Saha
    N. Chawla
    Metallurgical and Materials Transactions A, 2002, 33 : 3861 - 3869