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高黏土含量页岩在温度和湿度条件下的吸湿效应及其对力学性能的影响

Hygroscopic effect of high clay-content shale under temperature and humidity conditions and its impact on mechanical properties.

作者信息

Zhao Weisheng, He Wei, Hu Lichao, Wang Zhaoan

机构信息

School of Architectural Engineering, Neijiang Normal University, Neijiang, Sichuan, China.

State Key Laboratory of Intelligent Construction and Healthy Operation and Maintenance of Deep Underground Engineering, China University of Mining and Technology, Xuzhou, Jiangsu, China.

出版信息

PLoS One. 2025 Mar 7;20(3):e0319672. doi: 10.1371/journal.pone.0319672. eCollection 2025.

Abstract

High clay-content shale, containing hydrophilic clay minerals, is highly sensitive to environmental temperature and humidity. It readily absorbs moisture from the air, leading to increased water content and reduced mechanical strength, which poses challenges for underground structures, such as mining roadways, tunnels, and storage chambers. This study investigates the influence of temperature and humidity on the water content of high clay-content shale during its hygroscopic process and examines the evolution of its mechanical properties under variations in water content, aiming to reveal the effects of environmental temperature and humidity on the mechanical behavior of high clay-content shale. Hygroscopic experiments were conducted using a temperature and humidity chamber, with quartz sand as non-clay mineral control groups, and strength experiments were performed on reconstituted shale samples with varying water content. Results from the hygroscopic experiments showed that the equilibrium water content (EWC) of high clay-content shale decreases with lower humidity and higher temperature. When the humidity decreased from 100% RH to 80% RH, the average EWC dropped from 15.88% to 7.53%. Under high-humidity conditions (100% RH), the EWC decreased to 11.92% only after the temperature increased to 30°C. Within the experimental conditions, reducing humidity was found to be more effective than increasing temperature in reducing EWC. Based on the mechanical test results, reducing humidity can decrease the loss of uniaxial compressive strength (UCS) caused by moisture absorption from approximately 50% to 15.48%. The results indicate that humidity is the primary factor influencing the EWC and mechanical properties of high clay-content shale. Reducing humidity can significantly mitigate strength loss caused by moisture absorption, while increasing temperature plays a supplementary role. These findings provide a scientific basis for controlling temperature and humidity in underground engineering to enhance structural stability.

摘要

高黏土含量页岩含有亲水性黏土矿物,对环境温度和湿度高度敏感。它很容易从空气中吸收水分,导致含水量增加和机械强度降低,这给诸如采矿巷道、隧道和储存室等地下结构带来了挑战。本研究调查了温度和湿度对高黏土含量页岩吸湿过程中含水量的影响,并研究了在含水量变化情况下其力学性能的演变,旨在揭示环境温度和湿度对高黏土含量页岩力学行为的影响。使用温湿度试验箱进行吸湿实验,以石英砂作为非黏土矿物对照组,并对不同含水量的重塑页岩样品进行强度实验。吸湿实验结果表明,高黏土含量页岩的平衡含水量随湿度降低和温度升高而降低。当湿度从100%相对湿度降至80%相对湿度时,平均平衡含水量从15.88%降至7.53%。在高湿度条件(100%相对湿度)下,只有当温度升至30°C时,平衡含水量才降至11.92%。在实验条件范围内,发现降低湿度比升高温度在降低平衡含水量方面更有效。根据力学测试结果,降低湿度可将吸湿导致的单轴抗压强度损失从约50%降低至15.48%。结果表明,湿度是影响高黏土含量页岩平衡含水量和力学性能的主要因素。降低湿度可显著减轻吸湿导致的强度损失,而升高温度起辅助作用。这些发现为控制地下工程中的温度和湿度以提高结构稳定性提供了科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8406/11888144/37f228facd1a/pone.0319672.g001.jpg

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