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Structural performance of the finger-jointed strength of some wood species with different joint configurations

机译:不同接缝形态的某些木材的指接强度结构性能

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摘要

This study was conducted to evaluate the effects of adhesive type, wood species, and finger joint configurations on structural performance of the finger joint. The wood species studied were oriental beech (Fagus orientalis lipsky.), oak (Quercus robur), Scots pine (Pinus sylvestris lipsky.), poplar (Populus tremula lipsk.) and Uludag fir (Abies bormuelleriana Matff.) and adhesives were poly(vinyl acetate) (PVAc), Desmodur-VTKA (D-VTKA). However, there is little information available concerning the bending strength and modulus of elasticity for finger joints in these field. In this study, it was aimed to determine the bending strength and modulus of elasticity for finger joints. For this purpose, samples were tested according to the TS EN 310 standard. It was observed that the highest bending strength and modulus of elasticity were obtained in beech control (solid wood) samples. As for the finger joints, after the control samples, the highest bending strength value (57.4 N/mm~2) was obtained from Oriental beech wood samples having a 21 mm finger length and bonded with PVAc adhesive, the highest modulus of elasticity (8885.3 N/mm~2) was obtained from beech wood samples having a 21 mm finger length and bonded with PVAc adhesive. As a result of the effects of finger joints on bending strength and modulus elasticity test, if the length of finger joints increases up to 21 mm, the properties of bending strength increase.
机译:进行这项研究以评估胶粘剂类型,木材种类和手指关节构型对手指关节结构性能的影响。研究的木材种类为东方山毛榉(Fagus Orientalis lipsky。),橡木(Quercus robur),苏格兰松树(Pinus sylvestris lipsky。),杨树(Populus tremula lipsk。)和Uludag fir(Abies bormuelleriana Matff。)和粘合剂为poly(醋酸乙烯酯(PVAc),Desmodur-VTKA(D-VTKA)。但是,在这些领域中,关于手指关节的弯曲强度和弹性模量的信息很少。在这项研究中,旨在确定手指关节的弯曲强度和弹性模量。为此,根据TS EN 310标准对样品进行了测试。观察到在山毛榉对照(实木)样品中获得了最高的弯曲强度和弹性模量。至于手指关节,在对照样品之后,从具有21 mm手指长度并用PVAc粘合剂粘结的东方山毛榉木样品中获得最高的弯曲强度值(57.4 N / mm〜2),具有最高的弹性模量(8885.3) N / mm〜2)取自手指长度为21 mm的山毛榉木样品,并用PVAc粘合剂粘合。由于手指关节对弯曲强度和模量弹性测试的影响,如果手指关节的长度增加到21 mm,则弯曲强度的特性会增加。

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