在循环负荷下,不同孔隙结构的岩石损伤过程的声学发射特征和能量演变规律
Haowen Jiang1, Jiandong Dang2, Gang Chen2
1School of Emergency Management and Safety Engineering, Jiangxi University of Science and Technology, Ganzhou, 341000, China.
Scientific reports
|January 22, 2024
概括
岩石孔隙结构在循环负荷下显著影响损伤. 更密集的岩石显示较早的声辐射 (AE) 能量跳跃,表明更快的内部故障和改进的损害评估方法.
科学领域:
- 地质技术工程 地质技术工程
- 材料科学 材料科学 材料科学
背景情况:
- 了解循环负荷下的岩石行为对于基础设施的稳定性至关重要.
- 孔隙结构影响岩石的机械特性和故障机制.
研究的目的:
- 为了研究在单轴周期负荷下孔结构岩石的声辐射 (AE) 和损伤特征.
- 分析孔隙结构,AE能量和岩石损伤之间的关系.
- 评估和改进基于能源的岩石损伤计算方法.
主要方法:
- 在三种类型的孔状结构岩石上进行了单轴循环加载和卸载试验.
- 声波排放 (AE) 监测被用来记录能量释放和模式.
- 基于能源的损害计算方法进行了比较和修改.
主要成果:
- 在周期性加载过程中,AE环环表现出"跳跃"现象,在更密集的岩石结构中较早发生.
- 累积的AE能量显示了一个"步骤"趋势,不同的"步骤"间隔.
- 较小的孔隙和毛孔大小与更大的能量储存和更早的内部故障相关.
- 与现有方法相比,拟议的损害计算方法显示了更高的准确性 (更高的NSE).
结论:
- 在孔隙紧缩之前分散的能量是岩石损坏的主要驱动因素.
- 孔隙后压缩,岩石损伤是由于散射能量和塑性变形的联合影响造成的.
- 该研究提供了一种更准确的方法,用于评估周期性加载期间的岩石内部损伤.
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