Bending Behavior of Lightweight Wood-Based Sandwich Beams with Auxetic Cellular Core

被引:23
作者
Pelinski, Krzysztof [1 ]
Smardzewski, Jerzy [1 ]
机构
[1] Poznan Univ Life Sci, Fac Wood Technol, Dept Furniture Design, Wojska Polskiego 28, PL-60637 Poznan, Poland
关键词
wood composite; HDF; plywood; cardboard; energy; experiment; FEM; ENERGY-ABSORPTION; DAMAGE BEHAVIOR; COMPOSITE; PANEL; STRENGTH; DESIGN; MODEL;
D O I
10.3390/polym12081723
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The work concerns a three-point bending test of beams made of plywood, high density fibre boards, cardboard, and wood-epoxy mass. The goal of the investigation was to determine the effect of thickness and type of wood-based facings on stiffness, strength, ability to absorb, and dissipate the energy of sandwich beams with an auxetic core. The cognitive goal of the work was to demonstrate the possibility of using recycled materials for facings and cores instead of popular wood composites. Experimental studies and numerical calculations were performed on correctly calibrated models. Experimental studies have shown that the beams with HDF facings (E = 1528 MPa, MOR = 12.61 MPa) and plywood facings (E = 1248-1395 MPa, MOR = 8.34-10.40 MPa) have the most favourable mechanical properties. Beams with plywood facings also have a good ability to absorb energy (1.380-1.746 J), but, in this respect, the beams manufactured of HDF (2.223 J) exhibited better capacity. The use of an auxetic core and facings of plywood and cardboard significantly reduces the amount of dissipated energy (0.0093 J, 0.0067 J). Therefore, this type of structures can be used for modeling beams carrying high deflections.
引用
收藏
页数:15
相关论文
共 50 条
[31]   Quasi-static bending behavior of sandwich beams with thin-walled tubes as core [J].
Xiang, X. M. ;
Lu, G. ;
Wang, Z. H. .
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2015, 103 :55-62
[32]   Investigating the performance of GFRP/wood-based honeycomb sandwich panels for sustainable prefab building construction [J].
Hussain, Muzamil ;
Abbas, Naseem ;
Zahra, Nida ;
Sajjad, Uzair ;
Awan, Muhammad Bilal .
SN APPLIED SCIENCES, 2019, 1 (08)
[33]   Behavior of functionally graded carbon nanotube reinforced composite sandwich beams with pultruded GFRP core under bending effect [J].
Madenci, Emrah ;
Ozkilic, Yasin Onuralp ;
Bahrami, Alireza ;
Hakeem, Ibrahim Y. ;
Aksoylu, Ceyhun ;
Asyraf, Muhammad Rizal Muhammad ;
Beskopylny, Alexey N. ;
Stel'makh, Sergey A. ;
Shcherban, Evgenii M. ;
Fayed, Sabry .
FRONTIERS IN MATERIALS, 2024, 10
[34]   Bending Stiffness, Load-Bearing Capacity and Flexural Rigidity of Slender Hybrid Wood-Based Beams [J].
Subic, Barbara ;
Fajdiga, Gorazd ;
Lopatic, Joze .
FORESTS, 2018, 9 (11)
[35]   Mechanical Properties of the Wood-Based X-Type Lattice Sandwich Structure [J].
Zheng, Tengteng ;
Cheng, Yanpeng ;
Li, Shuai ;
Zhang, Yan ;
Hu, Yingcheng .
BIORESOURCES, 2020, 15 (01) :1927-1944
[36]   Torsional behavior of a wood-based composite beam [J].
Francescato, P ;
Pastor, J ;
Enab, T .
JOURNAL OF COMPOSITE MATERIALS, 2005, 39 (10) :865-879
[37]   Effect of a thin soft core on the bending behavior of a sandwich with thick CFRP facings [J].
Iaccarino, P. ;
Leone, C. ;
Durante, M. ;
Caprino, G. ;
Lamboglia, A. .
JOURNAL OF SANDWICH STRUCTURES & MATERIALS, 2011, 13 (02) :159-175
[38]   Nonlinear bending of sandwich beams with functionally graded negative Poisson's ratio honeycomb core [J].
Li, Chong ;
Shen, Hui-Shen ;
Wang, Hai .
COMPOSITE STRUCTURES, 2019, 212 :317-325
[39]   Influence of Core Density and Thickness on the Behavior of Sandwich Beams under Three-Point Bending: Analytical and Experimental [J].
Kazemi, Mahdi ;
Mirzabigi, Alireza .
TEHNICKI VJESNIK-TECHNICAL GAZETTE, 2023, 30 (06) :1992-2000
[40]   High Strength Wood-based Sandwich Panels Reinforced with Fiberglass and Foam [J].
Li, Jinghao ;
Hunt, John F. ;
Gong, Shaoqin ;
Cai, Zhiyong .
BIORESOURCES, 2014, 9 (02) :1898-1913