露天矿砂质泥岩在多次冻融循环下的物理和机械特性劣化及裂缝演变

IF 3.9 2区 工程技术 Q3 ENERGY & FUELS
Guoyu Yang, Yanlong Chen, Qihang Xie, Peng Wu, Yu Zhang
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引用次数: 0

摘要

在北纬 38° 以北寒冷地区的露天矿中,边坡岩石存在严重的冻融现象。本研究对露天矿边坡常见的砂质泥岩进行了冻融循环试验,考虑了冻融循环次数和冻结温度。调查的重点是冻融循环对砂质泥岩物理和机械性能以及声发射(AE)特性的影响。结果表明,随着冻融循环次数的增加和冻结温度的降低,砂质泥岩试样的质量损失率、P 波速度损失率、峰值应变、单轴抗压强度(UCS)和弹性模量均呈现非线性指数变化,且变化幅度逐渐减小。试样的应力-应变曲线从明显的脆性逐渐转变为塑性。同时,微观结构由致密变为疏松,微观表面由平整变为粗糙,裂纹和孔隙缺陷逐渐产生。试样的峰值 AE 振铃数、累积 AE 振铃数、裂纹起始应力和裂纹破坏应力都随着冻融循环次数的增加和冻结温度的降低而降低。这表明试样从脆性破坏转变为韧性破坏。不过,裂纹起始应力和裂纹破坏应力与峰值应力的比率并不随冻融循环次数和冻结温度的变化而显著变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Physical and mechanical characteristics deterioration and crack evolution of sandy mudstone in an open-pit mine under multiple freeze–thaw cycles

Physical and mechanical characteristics deterioration and crack evolution of sandy mudstone in an open-pit mine under multiple freeze–thaw cycles

In open-pit mines located in cold regions north of the 38°N latitude, there are significant freeze–thaw phenomena in slope rocks. This study conducted freeze–thaw cycle tests, considering the number of freeze–thaw cycles and the freezing temperature, on sandy mudstone commonly found in the slopes of open-pit mines. The investigation focused on the effects of freeze–thaw cycles on the physical and mechanical properties and acoustic emission (AE) characteristics of sandy mudstone. The results show that, with an increase in the number of freeze–thaw cycles and a decrease in freezing temperature, the sandy mudstone specimens exhibit nonlinear exponential changes in mass loss rate, P-wave velocity loss rate, peak strain, uniaxial compressive strength (UCS) and elastic modulus, and the amplitude of these changes gradually decreases. The stress–strain curves of specimens shift gradually from apparently brittle to plastic. Simultaneously, the microstructure changes from dense to loose, the micro surface transitions from flat to rough, and cracks and pore defects gradually develop. The peak AE ringing counts, cumulative AE ringing counts, crack initiation stress, and crack damage stress of the specimens all decrease with an increase in the number of freeze–thaw cycles and a decrease in freezing temperature. This suggests a shift from brittle failure to ductile failure. However, the ratio of crack initiation stress and crack damage stress to peak stress does not vary significantly with the number of freeze–thaw cycles and freezing temperature.

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来源期刊
Geomechanics and Geophysics for Geo-Energy and Geo-Resources
Geomechanics and Geophysics for Geo-Energy and Geo-Resources Earth and Planetary Sciences-Geophysics
CiteScore
6.40
自引率
16.00%
发文量
163
期刊介绍: This journal offers original research, new developments, and case studies in geomechanics and geophysics, focused on energy and resources in Earth’s subsurface. Covers theory, experimental results, numerical methods, modeling, engineering, technology and more.
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