AN INVESTIGATION ON THE EFFECTS OF WOODEN SPECIES OF DOWELS AND THE END DISTANCE OF CATCH CONNECTORS (CLAMEXP14) ON THE BENDING MOMENT OF L-TYPE CORNER JOINTS FOR RTA (READY TO ASSEMBLE) FURNITURE

Wood and Fiber Science

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Field Value
 
Title AN INVESTIGATION ON THE EFFECTS OF WOODEN SPECIES OF DOWELS AND THE END DISTANCE OF CATCH CONNECTORS (CLAMEXP14) ON THE BENDING MOMENT OF L-TYPE CORNER JOINTS FOR RTA (READY TO ASSEMBLE) FURNITURE
 
Creator Karaman, Abdurrahman
 
Subject
Bending moment capacity, corner joint, end distance, Clamex P14 fastener, non-glued wooden dowel
10.100 TEMEL ÖZELLİKLER; 10.200 KIRILMA MEKANİĞİ ; 50.300 AHŞAP KALİTESİ; 80.300 MDF;80.600 YAPISAL KOMPOZİT KERESTE
 
Description In this study, the effects of the wood species of dowels and the end distance were examined relative to the moment resistance of L-type corner joints with catch connector (ClamexP14) and three different wood species of dowels were used as specimen (as used in the furniture industry). L-type joint specimens 297 mm long were tested under static diagonal compression loads for determining the bending moment capacity. The results showed that the Orientalis beech dowel had the highest bending moment resistance under compression. Regarding the end distance, the highest bending moment resistance was obtained from an end distance of 60 mm. 
 
Publisher Wood and Fiber Science
 
Contributor
 
Date 2021-02-05
 
Type info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion

 
Format application/pdf
 
Identifier http://wfs.swst.org/index.php/wfs/article/view/3019
 
Source Wood and Fiber Science; Vol 53, No 1 (2021); 48-61
0735-6161
0735-6161
 
Language eng
 
Relation http://wfs.swst.org/index.php/wfs/article/view/3019/2610
http://wfs.swst.org/index.php/wfs/article/downloadSuppFile/3019/1846
http://wfs.swst.org/index.php/wfs/article/downloadSuppFile/3019/1847
http://wfs.swst.org/index.php/wfs/article/downloadSuppFile/3019/1848
http://wfs.swst.org/index.php/wfs/article/downloadSuppFile/3019/1849
 
Rights Copyright (c) 2021 Wood and Fiber Science
 

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