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Monitoring and correction of the stress in an anchor bolt based on Pulse Pre‐Pumped Brillouin Optical Time Domain Analysis

机译:基于脉冲预泵浦布里渊光学时域分析监测和校正锚螺栓中应力的监测和校正

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摘要

Bolt is an important connection in underground construction and monitoring its stress characteristics is essential to evaluate the effectiveness of bolt. The strain information collected along a rock bolt reveals the long‐term movement characteristics of rock mass, which greatly helps toward disaster prevention and risk warning. Grooving on the surface of a bolt and embedding an optical fiber is one of the main methods for monitoring the anchorage performance and stress distribution around the bolt in underground engineering. In this study, Pulse Pre‐Pumped Brillouin Optical Time Domain Analysis (PPP‐BOTDA) technology is used to evaluate the stress, axial force, and shear stress distribution of the bolt under tensile load for different types (grooved and nongrooved) of bolts embedded in concrete with resin as anchoring agent. The results show that the PPP‐BOTDA sensor can be used to monitor the stress state of the bolt embedded in concrete with resin as anchoring agent when the bolt is subjected to a tensile force. However, the apparent stress value measured in this way is not the actual stress value of the bolt, but is an increased value caused due to the groove. The closer to the exposed end of the bolt, the greater is the deviation between the apparent stress value and the actual stress value of the bolt. Based on the monitoring results from this experimental study, a stress reduction calculation method is proposed, which can change the measured value into the actual stress of the bolt.
机译:螺栓是地下建设中的重要联系,监测其应力特性对于评估螺栓的有效性至关重要。沿岩石螺栓收集的应变信息揭示了岩体的长期运动特性,这极大地有助于防灾和风险警告。螺栓表面上的凹槽并嵌入光纤是监测地下工程中螺栓周围锚固性能和应力分布的主要方法之一。在本研究中,脉冲预泵浦布里渊光学时域分析(PPP-BOTDA)技术用于评估螺栓嵌入式(凹槽和非研)的拉伸载荷下螺栓下螺栓的应力,轴力和剪切应力分布在混凝土中用树脂作为锚固剂。结果表明,当螺栓经受拉伸力时,PPP-BOTDA传感器可用于监测混凝土中嵌入混凝土中的螺栓的应力状态。然而,以这种方式测量的表观应力值不是螺栓的实际应力值,而是由于凹槽而导致的值增加。螺栓的暴露端越接近螺栓的表观应力值和实际应力值越大。基于该实验研究的监测结果,提出了一种应力降低计算方法,可以将测量值改变为螺栓的实际应力。

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