Extended finite element analysis on size effects of bending performance for Chinese larch pine laminated veneer lumber

被引:0
|
作者
Li, Minmin [1 ]
Zhao, Juan [1 ]
Wang, Guolin [1 ]
机构
[1] Shanghai Inst Technol, Sch Urban Construct & Safety Engn, Shanghai 201418, Peoples R China
基金
上海市自然科学基金;
关键词
Chinese pine larch laminated veneer lumber; Extended finite element analysis; Bending performance; Size effect; Equivalent crack; FRACTURE-TOUGHNESS; COHESIVE ZONE; MODE-I; WOOD; FAILURE;
D O I
10.1016/j.istruc.2025.108510
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Laminated Veneer Lumber (LVL), known for its excellent physical and mechanical properties, is widely used as flexural members in modern timber structures. This study aims to numerically investigate the size effect on the bending performance of LVL and provide a foundation for the engineering design of such members. Using Chinese larch pine LVL (CLP-LVL) as a case study, material properties obtained from tests were adopted to construct the bending model through Extended Finite Element Method (XFEM) and Cohesive Zone Model (CZM) method. The model incorporated equivalent cracks to characterize the depth and width effects on the bending performance of CLP-LVL. The results indicated that the XFEM and CZM method could effectively simulate the load-displacement relationship, bending strength, and failure modes of CLP-LVL. The XFEM crack was proved to be an effective approach for modeling strength degradation defects in CLP-LVL. Parameters for the equivalent cracks representing the depth and width effects on bending performance of CLP-LVL were derived, and a numerical analysis method for its size effects based on equivalent crack was proposed. It is recommended to introduce a 30 degrees equivalent crack in the bending model of CLP-LVL, as the resulting load-displacement relationship, bending strength, initial crack, and delamination are in strong agreement with experimental results for full-scale CLP-LVL. The proposed numerical method is also applicable for analyzing the size effect in other timber flexural members with similar material properties to CLP-LVL. For other brittle materials or members, parametric analysis of equivalent cracks can be employed in the related model to propose corresponding numerical methods for analyzing bending size effects.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Size effects on the bending strength of Chinese larch pine laminated veneer lumber
    Minmin Li
    Minjuan He
    Zheng Li
    European Journal of Wood and Wood Products, 2023, 81 : 1211 - 1222
  • [2] Size effects on the bending strength of Chinese larch pine laminated veneer lumber
    Li, Minmin
    He, Minjuan
    Li, Zheng
    EUROPEAN JOURNAL OF WOOD AND WOOD PRODUCTS, 2023, 81 (05) : 1211 - 1222
  • [3] Effect of size on the bending strength of laminated veneer lumber
    Fonselius M.
    Wood Science and Technology, 1997, 31 (6) : 399 - 413
  • [4] Effect of size on the bending strength of laminated veneer lumber
    Fonselius, M
    WOOD SCIENCE AND TECHNOLOGY, 1997, 31 (06) : 399 - 413
  • [5] Effect of size on the bending strength of laminated veneer lumber
    Fonselius, M.
    Wood Science and Technology, 31 (06):
  • [6] Analysis on Microstructure and Mechanical Properties of Pine Laminated Veneer Lumber
    Xue, Bing
    Hu, Yingcheng
    Cheng, Fangchao
    Zhang, Li
    ECO-MATERIALS PROCESSING AND DESIGN XI, 2010, 658 : 479 - 482
  • [7] THE EFFECTS OF SOME FACTORS ON THE IMPACT BENDING STRENGTH OF LAMINATED VENEER LUMBER
    Bal, Bekir Cihad
    Bektas, Ibrahim
    BIORESOURCES, 2012, 7 (04): : 5855 - 5863
  • [8] Analysis of the fracture behavior of Radiata Pine timber and Laminated Veneer Lumber
    Franke, Bettina
    Quenneville, Pierre
    ENGINEERING FRACTURE MECHANICS, 2014, 116 : 1 - 12
  • [9] THE EFFECTS OF WOOD SPECIES, LOAD DIRECTION, AND ADHESIVES ON BENDING PROPERTIES OF LAMINATED VENEER LUMBER
    Bal, Bekir Cihad
    Bektas, Ibrahim
    BIORESOURCES, 2012, 7 (03): : 3104 - 3112
  • [10] Effects of scarf joints on bending strength and modulus of elasticity to laminated veneer lumber (LVL)
    Ozcifci, Ayhan
    BUILDING AND ENVIRONMENT, 2007, 42 (03) : 1510 - 1514