粘接螺纹杆配筋胶合木极限抗剪承载力试验研究

Alireza Bahrami, Emil Blomberg, Simon Boqvist, Markus Lauridsen, Bengt Eriksson
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摘要

胶合螺纹(GIT)棒被认为是一种有效的木材连接方法,具有高承载能力、大刚度和良好的防火性能等优点。这种连接方式已广泛应用于新建的现代木结构和加固现有木结构。本试验研究的目的是探讨在胶合木上加GIT棒对其极限抗剪能力的影响,并研究GIT棒与胶合木的相互作用。研究结果可以帮助研究人员和工程人员选择合适的方法,使GIT棒与纤维方向的倾斜角(IA)更优,从而获得更高的USFCs。共测试了40个胶合木样品的失效情况。实验测试由5个不同系列的样品组成,每个系列8个样品。样品系列1为非增强胶合木。样品系列2和4分别在与纤维方向45°和90°的两个不同方向上用GIT棒增强胶合木。样品系列3和样品系列5与样品系列2和样品系列4的加固方式相同,但它们在中间分开。使用标准试验机对样品进行失效测试。该机器连接到一台计算机,该计算机记录了从测试中获得的所有值。研究结果以力-位移图的形式得到。计算了样品的刚度和胶合木与GIT杆的相互作用。对不同系列的试验结果进行了比较和讨论。实验测试结果表明,样品系列2的平均USFC增加了12.5%。而系列4样品的平均USFC没有显著提高。在向纤维方向45°方向补强的胶合木与GIT棒的相互作用为31.8%,在向纤维方向90°方向补强的胶合木与GIT棒的相互作用为3.8%。用GIT棒加强胶合材料显示了增强其USFC的潜力。然而,在与纤维的内径为45°的方向上,与在与纤维的内径为90°的方向上,用GIT棒加固胶合板的效果要优于用GIT棒加固胶合板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation of Ultimate Shear Force Capacity of Glulam Reinforced with Glued-in Threaded Rods
Glued-in threaded (GIT) rods have been considered an effective timber connection method having several advantages, such as high load-carrying capacity, great stiffness, and good fire resistance. This type of connection has widely been utilized in newly built modern timber structures and for reinforcing the existing ones. The purpose of this experimental research is to investigate how the ultimate shear force capacity (USFC) of glulam is affected if it is reinforced with GIT rods and to study the interaction between the glulam and GIT rods. The results of this research can help researchers and engineers to select a suitable method of reinforcing the glulam with GIT rods at a superior inclination angle (IA) to the fiber direction in order to achieve higher USFCs. A total of forty glulam samples were tested for failure. The experimental tests consisted of five different series of samples with eight samples in each series. Sample series 1 were unreinforced glulam. Sample series 2 and 4 were glulam reinforced with the GIT rods at two different IAs of 45° and 90° to the fiber direction, respectively. Sample series 3 and 5 were glulam reinforced in the same way as sample series 2 and 4, but they were split in the middle. The samples were tested for failure using a standard testing machine. The machine was connected to a computer that recorded all the values obtained from the tests. The results of the study were obtained as force-displacement graphs. The stiffness of the samples and interaction between the glulam and GIT rods were also calculated. The results achieved from the experimental tests of different series were compared and discussed. The experimental tests resulted in a 12.5% increase in the average USFC of sample series 2. However, the average USFC of sample series 4 was not enhanced significantly. The interaction between the glulam and GIT rods was obtained as 31.8% for the samples with reinforcing at the IA of 45° to the fiber direction and 3.8% for the samples with reinforcing at the IA of 90° to the fiber direction. Reinforcing the glulam with the GIT rods demonstrated the potential of enhancing its USFC. However, reinforcing the glulam with the GIT rods at the IA of 45° to the fiber direction was found to be superior to reinforcing the glulam with the GIT rods at the IA of 90° to the fiber direction.
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