[1]Zhu J, Chen X, Chen J, Chen H, Pak R Y S. Effect of cyclic loading level on mechanical response and microcracking behavior of saturated sandstones: Correlation with water weakening phenomenon[J]. Engineering Geology, 2024, 340: 107667.
[2]Zhu J, Chen X, Chen J, Liu Z, Deng J, Chen H. Fracturing and acoustic emission characteristics of saturated reservoir rocks under constant-amplitude-cyclic loading[J]. Bulletin of Engineering Geology and the Environment, 2024, 83(10).
[3]Zhu J, Deng J. Insights from a combined analysis of acoustic emission signals for water‑bearing rocks in Four‑Point Bending tests: Failure Mode Classification and Strength Degradation[J]. Rock Mechanics and Rock Engineering, 2023, 56(2): 3843-3855.
[4]Zhu J, Deng J, Ning P, Fu Z, Li X, Pak R Y S. Effects of water saturation and loading condition on rock tensile strength: Insights from Acoustic Emission analysis[J]. Rock Mechanics and Rock Engineering, 2023, 57: 163-179.
[5]Zhu J, Deng J, Wang P, Fu Z, Pak Ronald Y S, Zhao W. Mechanical behavior and failure mechanism of rocks under impact loading: the coupled effects of water saturation and rate dependence[J]. International Journal of Geomechanics, 2023, 23(11): 04023196.
[6]Zhu J, Deng J, Pak R Y S, Liu J, Lyu C. Experimental study on the failure process of water-bearing rock under uniaxial tension based on dominant frequency analysis of acoustic emission[J]. Bulletin of Engineering Geology and the Environment, 2023, 82(6).
[7]Zhu J, Deng J, Chen F, Wang F. Failure analysis of water-bearing rock under direct tension using acoustic emission[J]. Engineering Geology, 2022, 299: 106541.
[8]Zhu J, Deng J, Ma Y, Pak R Y S, Zhang Z. Experimental study on the competing effects of strain rate and water weakening on compressive strength of saturated rocks[J]. Engineering Geology, 2022, 310: 106873.
[9]朱俊,邓建辉,陈菲,黄弈茗.压缩荷载下饱和硬岩软化特性与机制研究[J].岩土工程学报, 2023, 45(4): 1-9.
[10]朱俊,邓建辉,付自国.饱和硬岩直接拉伸强度的估算与验证[J].工程地质学报, 2022, 31(05): 1605-1614. |