Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard Facings
A new sandwich composite structure was prepared that utilizes classic wood-based composites as the core and face materials. Particleboards were used as faces, which covered a plywood-made iso-grid core. A new type of core-face fixation was suggested and assessed. The sandwich panels can be regarded...
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North Carolina State University
2015-11-01
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doaj-1b20fd1744f8465a9c3738065d52d6892020-11-24T23:46:37ZengNorth Carolina State UniversityBioResources1930-21261930-21262015-11-0111119520810.15376/biores.11.1.195-208Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard FacingsPetr Klímek0Rupert Wimmer1Martin Brabec2Václav Sebera3Faculty of Forestry and Wood Technology, Mendel University in Brno, Zemědělská 3, 613 00 Brno, Czech Republic; Czech RepublicFaculty of Forestry and Wood Technology, Mendel University in Brno, Zemědělská 3, 613 00 Brno, Czech Republic; Czech RepublicFaculty of Forestry and Wood Technology, Mendel University in Brno, Zemědělská 3, 613 00 Brno, Czech Republic; Czech RepublicFaculty of Forestry and Wood Technology, Mendel University in Brno, Zemědělská 3, 613 00 Brno, Czech Republic; Czech RepublicA new sandwich composite structure was prepared that utilizes classic wood-based composites as the core and face materials. Particleboards were used as faces, which covered a plywood-made iso-grid core. A new type of core-face fixation was suggested and assessed. The sandwich panels can be regarded as lightweight, as their density was below 400 kg/m3. Digital image correlation (DIC) was used to determine Poisson’s ratios and obtain additional insight into the deformation behavior of the sandwich panel. DIC was also employed to assess the core-face bonding, which was based on imprinted grooves on one side of the particleboard face. The results include strength in edgewise and flatwise compression and flexural properties. The latter were determined through three-point bending tests. Comparable strength properties were found relative to the literature, which means that this new type of sandwich panel demonstrates a competitive property profile. It was concluded that the developed sandwich panel is versatile, and the hollow spaces in the core can be filled with insulation materials such as fibers or foams. Surfaces can also be covered with some overlay, delivering improved bending performance.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_11_1_195_Klimek_Novel_Sandwich_Panel_PlywoodSandwich structureWood-based panelDICMechanical testingDigital image correlationImprinted density pattern |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Petr Klímek Rupert Wimmer Martin Brabec Václav Sebera |
spellingShingle |
Petr Klímek Rupert Wimmer Martin Brabec Václav Sebera Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard Facings BioResources Sandwich structure Wood-based panel DIC Mechanical testing Digital image correlation Imprinted density pattern |
author_facet |
Petr Klímek Rupert Wimmer Martin Brabec Václav Sebera |
author_sort |
Petr Klímek |
title |
Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard Facings |
title_short |
Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard Facings |
title_full |
Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard Facings |
title_fullStr |
Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard Facings |
title_full_unstemmed |
Novel Sandwich Panel with Interlocking Plywood Kagome Lattice Core and Grooved Particleboard Facings |
title_sort |
novel sandwich panel with interlocking plywood kagome lattice core and grooved particleboard facings |
publisher |
North Carolina State University |
series |
BioResources |
issn |
1930-2126 1930-2126 |
publishDate |
2015-11-01 |
description |
A new sandwich composite structure was prepared that utilizes classic wood-based composites as the core and face materials. Particleboards were used as faces, which covered a plywood-made iso-grid core. A new type of core-face fixation was suggested and assessed. The sandwich panels can be regarded as lightweight, as their density was below 400 kg/m3. Digital image correlation (DIC) was used to determine Poisson’s ratios and obtain additional insight into the deformation behavior of the sandwich panel. DIC was also employed to assess the core-face bonding, which was based on imprinted grooves on one side of the particleboard face. The results include strength in edgewise and flatwise compression and flexural properties. The latter were determined through three-point bending tests. Comparable strength properties were found relative to the literature, which means that this new type of sandwich panel demonstrates a competitive property profile. It was concluded that the developed sandwich panel is versatile, and the hollow spaces in the core can be filled with insulation materials such as fibers or foams. Surfaces can also be covered with some overlay, delivering improved bending performance. |
topic |
Sandwich structure Wood-based panel DIC Mechanical testing Digital image correlation Imprinted density pattern |
url |
http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_11_1_195_Klimek_Novel_Sandwich_Panel_Plywood |
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