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Experimental Study on Bond-Slip Behavior of Bamboo Bolt-Modified Slurry Interface under Pull-Out Load

机译:拉伸载荷作用下竹螺栓改性泥浆界面粘结滑移特性的试验研究

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This paper presents an analysis of bamboo bolt-modified slurry interfaces based on 26 in situ axial pull-out tests intended to highlight the mechanical behavior of interface under a fracture mode. Three impact factors are analyzed anchorage length, bolt diameter, and bolt hole diameter, using the same materials of bamboo and modified slurry. The result shows that the interface between the bamboo bolt and anchoring agent is the control interface of an anchorage system, and the local behavior of the interface involves four stages elastic, soften, friction, and decoupling. Distribution law and change trend of slippage, stress, and strain of anchoring interface along with the axial direction of an anchor bolt were analyzed. The result shows that there is effective anchoring length limit in this kind of interface, and that the complete decoupling phenomenon should not be neglected. Through a comparative analysis of the existing bond-slip model and interface bond-slip curve, and considering the correspondence of the strain-slip curve and trilinear bond-slip model simultaneously, a modified trilinear bond-slip model has been proposed. The friction section of this model is limited, and shearing stress in the complete decoupling section is zero.
机译:本文基于26个原位轴向拉拔试验对竹节螺栓改性的泥浆界面进行了分析,旨在突出断裂模式下界面的力学行为。使用相同的竹材和改性泥浆,分析了三个影响因素,即锚固长度,螺栓直径和螺栓孔直径。结果表明,竹锚杆与锚固剂之间的界面是锚固系统的控制界面,界面的局部行为涉及弹性,软化,摩擦和解耦四个阶段。分析了锚固界面的滑移,应力,应变与锚固螺栓轴向的分布规律及变化趋势。结果表明,这种界面存在有效的锚固长度限制,完全的解耦现象不容忽视。通过比较现有的粘结滑移模型和界面粘结滑移曲线,并同时考虑应变滑移曲线和三线性粘结滑移模型的对应关系,提出了一种改进的三线性粘结滑移模型。该模型的摩擦部分是有限的,整个去耦部分的剪切应力为零。

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