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Provisions for Ductile Behavior of Timber-to-Steel Connections with Multiple Glued-In Rods

机译:带有多个胶合杆的木钢连接的韧性行为规定

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Connections with glued-in rods are very efficient, high-strength joints and can be successfully used, for example, for the anchorage of vertical timber elements to a foundation. Although extensive research was done on the pullout strength of single rods, few references can be found on the behavior of multiple glued-in rods. This paper presents the results of an experimental program carried out on timber-to-steel connections with multiple glued-in rods. Two series of 10 specimens with four large-diameter, glued-in rods made from mild steel (Series GB) and 10 specimens with 12 small-diameter, high-grade glued-in rods (Series GS) were tested to failure under monotonic tensile load. Both types of connections ultimately failed in a brittle manner; however, the GB series developed some plastic deformations prior to failure which was caused by the pullout of two rods and longitudinal splitting of the timber member. By comparing the experimental results with the analytical predictions, no significant group effect could be detected in the GB test series, and an overall acceptable approximation was found. In the GS test series, no final conclusion on the group effect could be drawn as several rods failed by nut-stripping. A parametric study using analytical formulas was carried out to investigate the effect of rod strength, rod diameter, glued length, and timber density on the connection performance. Based on the results of the parametric study and experimental tests, it can be concluded that the use of mild steel as well as more rods of larger diameter, properly spaced from each other, and from the edges are all effective measures to increase the connection ductility. Furthermore, by leaving a suitable length of rod unbonded between the steel plate and the glued length, it is possible to control ductility, providing all brittle failure modes have a higher strength capacity than the rod-yielding force. Special care should be taken during the manufacturing process to ensure good quality of gluing (required glued length and amount of adhesive) and rod alignment.
机译:带有胶合杆的连接是非常有效的高强度接头,可以成功地用于例如将垂直木材元素锚固到基础上。尽管对单根棒的抗拉强度进行了广泛的研究,但很少有人发现多根胶棒的性能。本文介绍了对具有多个胶合杆的木材-钢连接进行的实验程序的结果。对由低碳钢制成的四个带有大直径胶合棒的10个试样的两个系列(GB系列)和带有12个小直径的高品质胶合棒(GS系列的)的10个样品进行了单调拉伸下的破坏测试加载。两种连接最终都以脆性方式失败。但是,GB系列在断裂之前出现了一些塑性变形,这是由两个杆的拔出和木材构件的纵向劈裂引起的。通过将实验结果与分析预测结果进行比较,在GB测试系列中未检测到明显的群效应,并且找到了总体可接受的近似值。在GS测试系列中,无法得出关于群效应的最终结论,因为有几根杆因螺母剥落而失效。使用分析公式进行了参数研究,以研究杆强度,杆直径,胶合长度和木材密度对连接性能的影响。根据参数研究和实验测试的结果,可以得出结论,使用软钢以及更多直径更大,彼此间隔适当的杆以及与边缘的杆都是增加连接延性的有效措施。 。此外,通过使合适长度的杆未粘结在钢板和胶合长度之间,可以控制延展性,条件是所有脆性破坏模式都具有比杆屈服力更高的强度能力。在生产过程中应格外小心,以确保良好的胶合质量(要求的胶合长度和胶粘剂数量)和焊条对齐。

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