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Experimental investigation of pretensioned bolts under cyclic loading Damage assessment using acoustic emission

机译:循环载荷下预应力螺栓的声发射试验研究

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摘要

Understanding the acoustic emission effects on bolts under cyclic loading is of great significance for the support of roadways. The presented research focuses on the acoustic emission characteristics of bolts under cyclic loading. The following main conclusions were drawn: (1) With a higher loading frequency, the acoustic emission counts rate increases, while the total energy released in a given cyclic loading path decreases. (2) A fitting formula is established according to the relationship between the tension amplitude and cumulative acoustic emission counts, which can analyze the tension magnitude level of the cyclic load. (3) A damage factor for a cyclic load is proposed based on the acoustic emission counts generated during the cyclic and monotonic loading process that can analyze the degree of damage to the anchorage system caused by the cyclic load. (4) Based on the spatial distribution of the acoustic emission orientation points and the acoustic emission energy generated during the pull-out process, the acoustic emission damage evolution process of the anchorage specimens is deduced, and the mechanism of the high stability of the pretension anchorage system after cyclic loading is analyzed. The above conclusions may provide some experimental references for the application of acoustic emission technology in bolts supporting roadways.
机译:了解循环荷载作用下螺栓的声发射效应对于支撑巷道具有重要意义。提出的研究重点是循环载荷下螺栓的声发射特性。得出以下主要结论:(1)在较高的加载频率下,声发射计数率增加,而在给定的循环加载路径中释放的总能量减少。 (2)根据张力幅值与累积声发射计数之间的关系建立拟合公式,可以分析循环载荷的张力幅值水平。 (3)基于循环荷载和单调荷载过程中产生的声发射计数,提出了循环荷载的破坏因子,可以分析循环荷载对锚固系统的破坏程度。 (4)根据声发射定向点的空间分布和拉拔过程中产生的声发射能量,推导了锚固试样的声发射损伤演化过程,并提出了预应力高稳定性的机理。分析了循环荷载后的锚固系统。以上结论可为声发射技术在巷道锚杆支护中的应用提供一些实验参考。

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