含交叉裂隙红砂岩能量耗散与声发射特征研究
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作者单位:

1.华东交通大学土木建筑学院,江西 南昌 330013 ;2.江西建设职业技术学院管理工程系,江西 南昌 330200

作者简介:

刘旺(1991—),男,博士研究生,研究方向为岩石力学,结构防灾减灾工程。E-mail:2020019081400003@ecjtu.edu.cn。

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中图分类号:

TU452;TU458

基金项目:

国家自然科学基金项目(51664014);江西省教育厅科学技术研究项目(GJJ2407501,GJJ2407506)


Study on Energy Dissipation and Acoustic Emission Characteristics of Red Sandstone with Cross-Fractures
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Affiliation:

1.School of Civil Engineering and Architecture, East China Jiaotong University, Nanchang 330013 , China ;2.Department of Management Engineering, Jiangxi Institute of Construction, Nanchang 330200 , China

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    摘要:

    为研究含交叉裂隙岩石在加载过程中的力学行为、能量耗散特性以及声发射信号特征,制备了具有不同角度交叉裂隙的岩石试样,并采用单轴加载试验与声发射监测技术,获取了力学参数和声发射特征,包括振铃计数和累计振铃计数。研究结果显示:交叉裂隙对岩石的应力-应变关系和力学特性产生了显著影响,尤其是在裂隙角度为30°和60°时,岩石出现了显著的应力突降和局部损伤现象;通过对能量耗散分析可知岩石在压密阶段吸收并耗散能量,在弹性阶段将能量转化为弹性应变能,而在塑性阶段,随着微破坏的增加,耗散能增加,弹性应变能的增长速率减缓;振铃计数与耗散能动态趋势密切相关,裂隙扩展和局部应力集中促进声发射事件频发,同时加剧岩石内部能量耗散,导致弹性应变能减少。研究结果为土木工程领域中的裂隙岩石工程灾害预警提供了一定的理论依据。

    Abstract:

    The objective of this study is to investigate the mechanical behavior, energy dissipation characteristics, and acoustic emission (AE) signal features of rocks with cross- fractures during loading. Rock specimens with varying angles of cross-fractures were fabricated, and uniaxial compression tests coupled with AE monitoring were conducted to obtain mechanical parameters and AE characteristics, including ring counts and cumulative counts. The results indicate that cross-fractures significantly affect the stress-strain relationship and mechanical properties of rocks, particularly at fracture angles of 30° and 60°, where pronounced stress drops and localized damage phenomena occur. The analysis of energy dissipation reveals that during the compaction phase, rock absorbs and dissipates energy. In the elastic phase, energy is transformed into elastic strain energy. However, in the plastic phase, as micro-damage increases, the dissipated energy rises while the growth rate of elastic strain energy decelerates. The AE ring count is closely related to the dynamic trend of dissipated energy. The propagation of fractures and the concentration of local stress promote frequent AE events, simultaneously intensifying the internal energy dissipation of the rock and leading to a reduction in elastic strain energy. These findings provide a theoretical basis for the early warning of engineering disasters in fractured rocks within the field of civil engineering.

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刘旺,刘永胜,翟茂林. 含交叉裂隙红砂岩能量耗散与声发射特征研究[J]. 华东交通大学学报,2025,42(5):38- 48.

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  • 收稿日期:2024-05-06
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  • 在线发布日期: 2025-11-25
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