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不同高温后红砂岩在静动态加载下力学性能降解机制的研究

Study on the degradation mechanism of mechanical properties of red sandstone under static and dynamic loading after different high temperatures.

作者信息

Lin Haixiao, Liu Weidong, Zhang Duan, Chen Bin, Zhang Xinsheng

机构信息

School of Civil Engineering, Henan Polytechnic University, Jiaozuo, 454003, China.

出版信息

Sci Rep. 2025 Apr 4;15(1):11611. doi: 10.1038/s41598-025-93969-4.

Abstract

To study the effect of high temperature on the mechanical properties of red sandstone, YNS600 electro-hydraulic servo universal testing machine and pneumatic separating Hopkinson press bar (SHPB) device were respectively used to conduct static and dynamic load loading tests on red sandstone after 500~1000 ℃ action, and X diffraction detection. The damage pattern and mechanical property index changes before and after high temperature action were compared, and the relationship between mineral composition, microstructure and mechanical parameters of the specimens and temperature was analyzed, and a theoretical model was constructed. With the increase of temperature, the peak strength and elastic modulus under static and dynamic loading decreased significantly, and compared with the static stress-strain curve, the dynamic stress-strain curve did not have an obvious compaction phase, and the mass loss rate, volume expansion rate, and longitudinal wave velocity attenuation rate increased above 600 ℃. Minerals such as zeolite and pyrite within the red sandstone specimen gradually reacted after high temperature. The theoretical model explains the degradation mechanism of the mechanical properties of red sandstone under the action of idealized high temperature. The research results can provide a reliable scientific basis for the assessment and prediction of rock engineering after high-temperature fire.

摘要

为研究高温对红砂岩力学性能的影响,分别采用YNS600型电液伺服万能试验机和气动分离式霍普金森压杆(SHPB)装置,对经历500~1000℃作用后的红砂岩进行静动态加载试验,并进行X衍射检测。对比了高温作用前后红砂岩的损伤模式及力学性能指标变化,分析了试件矿物成分、微观结构与力学参数和温度之间的关系,并构建了理论模型。随着温度升高,静动态加载下的峰值强度和弹性模量均显著降低,且与静态应力-应变曲线相比,动态应力-应变曲线无明显压实阶段,600℃以上质量损失率、体积膨胀率和纵波波速衰减率增大。红砂岩试件内的沸石、黄铁矿等矿物经高温后逐渐发生反应。该理论模型解释了理想化高温作用下红砂岩力学性能的劣化机理。研究成果可为高温火灾后岩石工程的评估与预测提供可靠的科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b35d/11971379/590305b8710d/41598_2025_93969_Fig1_HTML.jpg

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