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Experimental and analytical investigations of scaffolds with anchor rod and plank

机译:锚杆和木板脚手架的实验和分析研究

摘要

This paper investigates the influence of anchor rods, planks and inner knee braces on the critical load of scaffolding systems under concentric and eccentric loads in construction. The steel rebar of grade 3 is used in place of the patent anchor rod in this study. The results show that the critical load of the scaffolding system increases by 1.5 times when anchor rods of a length of 30 cm are used on two sides of each story of the scaffolding system. The critical load increases by 4 times when the scaffolding system has both the anchor rods and plank. The critical load of the scaffolding system with the anchor rods placed on each story is twice as large as that with anchor rods added every two stories; the failure mode of the system also switches from the in-plane to out-of-plane mode. The 30-cm-long anchor rod, used in place of a steel bar of grade 3, provides a good lateral restraint to the scaffolding system. Moreover, the setup plank can significantly elevate the critical load of the scaffolding system; the critical load increases approximately 1.5 times under the concentric load, and increases up to 2.2 times under the TL/4 eccentric load, defined as a load applied at a quarter distance from the end. The anchor rod and the plank should always be included in a scaffolding system to improve its stability, especially under the eccentric loads in construction.
机译:本文研究了在建筑的同心和偏心荷载下,锚杆,木板和内部膝盖支撑对脚手架系统的临界荷载的影响。在本研究中,使用3级钢代替了专利锚杆。结果表明,当在脚手架系统各层的两侧使用长度为30 cm的锚杆时,脚手架系统的临界载荷将增加1.5倍。当脚手架系统同时具有锚杆和木板时,临界载荷将增加4倍。在每个楼层上放置锚杆的脚手架系统的临界载荷是每两个楼层添加锚杆的脚架系统的临界载荷的两倍。系统的故障模式也从平面内模式切换到平面外模式。 30厘米长的锚杆代替了3级钢筋,为脚手架系统提供了良好的横向约束。此外,安装木板可以显着提高脚手架系统的关键负载;临界负载在同心负载下增加约1.5倍,在TL / 4偏心负载(定义为距末端四分之一距离处施加的负载)下增加至2.2倍。锚杆和木板应始终包含在脚手架系统中,以提高其稳定性,尤其是在建筑中的偏心荷载下。

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