Experimental evaluation and numerical modeling of the mechanical performance of OSB sandwich panels manufactured with trapezoidal core

被引:7
|
作者
Ament Barbirato, Guilherme Henrique [1 ]
Lopes Junior, Wanley Eduardo [2 ]
Martins, Romulo Henrique [3 ]
Soriano, Julio [4 ]
Fiorelli, Juliano [5 ]
机构
[1] Univ Sao Paulo, Anim Sci, USP FZEA, Postgrad Programme Mat Sci & Engn, Duque de Caxias Norte Ave 225, BR-13635900 Pirassununga, Brazil
[2] Univ Sao Paulo, Mat Sci & Engn, USP FZEA, Postgrad Programme Mat Sci & Engn, Duque de Caxias Norte Ave 225, BR-13635900 Pirassununga, Brazil
[3] Univ Sao Paulo, Postgrad Programme Mat Sci & Engn, USP FZEA, Duque de Caxias Norte Ave 225, BR-13635900 Pirassununga, Brazil
[4] Univ Estadual Campinas, Sch Agr Engn, Dept Rural Construct & Ambience, UNICAMP, Candido Rondon Ave 501, BR-13083875 Campinas, SP, Brazil
[5] Univ Sao Paulo, Dept Biosyst Engn, Duque de Caxias Norte Ave 225, BR-13635900 Pirassununga, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
Balsa wood waste; Oriented strand board; Castor oil polyurethane resin; Finite element method; Bending stiffness; BOARD OSB; WOOD; BEHAVIOR; BEAMS; FIBER;
D O I
10.1016/j.conbuildmat.2022.126721
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The development of materials using forest biomass by-products has presented a viable alternative to replacing conventional materials and a great potential for the reuse of waste by-products. This study aimed to evaluate experimentally and by computational modeling, the mechanical performance of OSB (Oriented Strand Board) panels stiffened by the trapezoidal core according to the bending direction. By the cross-section of the panels manufactured with strands of balsa wood waste and castor oil polyurethane resin, the influence of the core direction on the flexural stiffness and ultimate load capacity was evaluated. Bending performance tests showed that stiffness in the longitudinal direction was 56% greater than in the transversal direction. For this same approach and referring to the elastic-linear segment, the computational modeling by Finite Element Analysis showed a superiority of 66% for stiffness in the longitudinal direction. Regarding the deflections and predictions of critical regions for the failure of the panel, an appropriate accuracy of the computational models adjusted for the material's nonlinearity and orthotropy. The OSB sandwich panels reached the minimum normative requirements for structural purposes, presenting great potential for applications in civil constructions, due to their efficient bending stiffness added to the benefits of a bio-based waste product
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Mechanical performance evaluation of sandwich panels exposed to slamming impacts: Comparison between experimental and SPH results
    Hassoon, O. H.
    Tarfaoui, M.
    El Moumen, A.
    Qureshi, Y.
    Benyahia, H.
    Nachtane, M.
    [J]. COMPOSITE STRUCTURES, 2019, 220 : 776 - 783
  • [22] Experimental and Numerical Study on the Permeation Behavior of Foam-core Sandwich Panels in LCM
    Yan, Chao
    Wu, Hailiang
    Ren, Xueming
    Li, Yishen
    Tian, Yongjie
    Wu, Xiaoqing
    [J]. FIBERS AND POLYMERS, 2021, 22 (09) : 2612 - 2625
  • [23] Experimental and Numerical Study on the Permeation Behavior of Foam-core Sandwich Panels in LCM
    Chao Yan
    Hailiang Wu
    Xueming Ren
    Yishen Li
    Yongjie Tian
    Xiaoqing Wu
    [J]. Fibers and Polymers, 2021, 22 : 2612 - 2625
  • [24] Static mechanical response of sandwich panels with bilinear core
    Wei, Guangtao
    Feng, Lijia
    Wu, Linzhi
    [J]. JOURNAL OF SANDWICH STRUCTURES & MATERIALS, 2020, 22 (07) : 2421 - 2444
  • [25] Experimental and numerical investigations on mechanical performance of UHPC waffle panels
    Ding, Ran
    Zhang, Yapeng
    Wu, Weihong
    Fan, Jiansheng
    Zhang, Wan
    [J]. Jianzhu Jiegou Xuebao/Journal of Building Structures, 2024, 45 (08): : 93 - 107
  • [26] Mechanical behaviour of cellular core for structural sandwich panels
    Meraghni, F
    Desrumaux, F
    Benzeggagh, ML
    [J]. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 1999, 30 (06) : 767 - 779
  • [27] The mechanical behaviour of corrugated-core sandwich panels
    Rejab, M. R. M.
    Cantwell, W. J.
    [J]. COMPOSITES PART B-ENGINEERING, 2013, 47 : 267 - 277
  • [28] Bending analysis of textile reinforced concrete sandwich panels: Experimental and numerical evaluation
    Priyanga, R.
    Muthadhi, A.
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2024, 439
  • [29] Dynamic response of metallic trapezoidal corrugated-core sandwich panels subjected to air blast loading - An experimental study
    Zhang, Pan
    Liu, Jun
    Cheng, Yuansheng
    Hou, Hailiang
    Wang, Chunming
    Li, Yong
    [J]. MATERIALS & DESIGN, 2015, 65 : 221 - 230
  • [30] Experimental and Numerical Study on Fatigue of Sandwich Plates with Honeycomb Core Manufactured by Fused Deposition Modelling
    Uspensky, B.
    Derevianko, I.
    Avramov, K.
    Polishchuk, O.
    Salenko, A.
    [J]. APPLIED COMPOSITE MATERIALS, 2022, 29 (05) : 2033 - 2061