Suppr超能文献

钻孔周围煤岩体渐进破坏的超声特征及等效裂缝宽度。

Ultrasonic characteristics and equivalent crack width of coal and rock bodies around boreholes during progressive failure.

机构信息

College of Safety Science and Engineering, Xi'an University of Science and Technology, Xi'an, China.

Key Laboratory of Western Mine Exploitation and Hazard Prevention of the Ministry of Education, Xi'an, China.

出版信息

PLoS One. 2023 May 25;18(5):e0285808. doi: 10.1371/journal.pone.0285808. eCollection 2023.

Abstract

The ultrasonic characteristics of the coal and rock bodies around boreholes during failure are closely related to the crack propagation law. To investigate the ultrasonic characteristics and crack propagation law of coal and rock bodies around boreholes, different grouting samples with boreholes were taken to carry out ultrasonic test during progressive failure. The ultrasonic amplitude, velocity and attenuation coefficient of the samples were analyzed. According to the ultrasonic time difference formula, the equivalent crack width of the sample during the failure process is calculated. The influence of grouting material on the crack propagation law is quantitatively analyzed. The results show that: (1) The peak stress, elastic energy at the peak, ultrasonic parameters and crack propagation of the coal and rock bodies around boreholes show obvious differences influenced by the strength of the grouting material. (2) During the loading process, the arrival time of the first wave of the sample with holes is 5μs later than that of the grouting sample, and the ultrasonic energy attenuates fastest in the time domain, and the coda wave is not developed. (3) During the progressive failure, the ultrasonic velocity and attenuation coefficient of all show three stages of stability(00.6σp), slow change(0.6σp0.8σp) and rapid change(0.8σp1.0σp). According to the "sudden decrease" of velocity and the "sudden increase" of attenuation coefficient to judge the crack propagation of sample. (4) The equivalent crack width of the sample increases exponentially with the increase of stress level. At the time of reaching the peak stress, the equivalent crack width of SH-BH increases about 0.027mm0.032mm, SH-PU about 0.01mm0.014mm, and SH-CEM about 0.002mm0.006mm.

摘要

钻孔周围煤岩体破坏过程中的超声特征与裂纹扩展规律密切相关。为了研究钻孔周围煤岩体的超声特征和裂纹扩展规律,对不同注灰样进行了渐进破坏过程中的超声试验,对样品的超声幅度、波速和衰减系数进行了分析。根据超声时差公式,计算了样品破坏过程中的等效裂纹宽度。定量分析了注浆材料对裂纹扩展规律的影响。结果表明:(1)钻孔周围煤岩体的峰值应力、峰值弹性应变能、超声参数及裂纹扩展均受注浆材料强度影响而表现出明显差异;(2)在加载过程中,含孔样的首波到达时间比注灰样晚 5μs,且在时域内超声能量衰减最快,尾波不发育;(3)在渐进破坏过程中,所有样品的超声波速和衰减系数均表现出稳定(00.6σp)、缓慢变化(0.6σp0.8σp)和快速变化(0.8σp1.0σp)三个阶段,根据波速的“突然降低”和衰减系数的“突然增大”来判断样品的裂纹扩展;(4)随着应力水平的增加,样品的等效裂纹宽度呈指数增长。在达到峰值应力时,SH-BH 的等效裂纹宽度增加约 0.027mm0.032mm,SH-PU 增加约 0.01mm0.014mm,SH-CEM 增加约 0.002mm0.006mm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9505/10212090/7a017818201b/pone.0285808.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验