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个人简介

学习与工作经历 【1】2019.07-至今,四川大学,水利水电学院,特聘副研究员 【2】2011.09-2019.06年,四川大学“3+2+3”本硕博连读研究生 主持国家自然科学基金青年项目1项,参研国家自然科学基金重点项目、国家重点基础研究发展计划“973计划”课题和水电工程技术咨询项目等多项课题。发表SCI收录论文40余篇,含第一及通讯作者SCI论文20余篇,论文引用1400余次(Scopus),授权国家发明专利及软件著作权10余项。多次参加国内外会议并做学术报告,获2020年中国岩石力学与工程学会优秀博士学位论文奖。

研究领域

主要从事岩石力学与工程研究

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

[1] Zhang Q, Liu Y*, Dai F, Jiang RC. Experimental assessment on the fatigue mechanical properties and fracturing mechanism of sandstone exposed to freeze-thaw treatment and cyclic uniaxial compression. Eng Geol. 2022, 306: 106724.【IF=6.902】 [2] Liu XY, Liu Y*, Dai F, Yan ZL. Tensile mechanical behavior and fracture characteristics of sandstone exposed to freeze-thaw treatment and dynamic loading. Int J Mech Sci. 2022, 226: 107405. 【IF=6.772】 [3] Dai F, Zhang Q, Liu Y*, Du HB, Yan ZL. Experimental evaluation of sandstone under cyclic coupled compression-shear loading: fatigue mechanical response and failure behavior. Acta Geotech. 2022, https://doi.org/10.1007/s11440-022-01457-0.【IF=5.57】 [4] Liu Y, Dai F*, Pei PD. A wing-crack extension model for tensile response of saturated rocks under coupled static-dynamic loading. Int J Rock Mech Min. 2021, 146: 104893. 【IF=6.849】 [5] Luo QB, Dai F, Liu Y*, Gao MT, Li ZC, Jiang RC. Seismic performance assessment of velocity pulse-like ground motions under near-field earthquakes. Rock Mech Rock Eng. 2021, 54: 3799-3816. 【IF=6.518】 [6] Liu Y, Dai F*. A review of experimental and theoretical research on the deformation and failure behavior of rocks under cyclic loads. J Rock Mech Geotech. 2021, 13(5), 1203-1230. 【IF=5.915】 [7] Yan ZL, Dai F, Liu Y*, Du HB, Luo J. Dynamic strength and cracking behaviors of single-flawed rock subjected to coupled static-dynamic compression. Rock Mech Rock Eng. 2020, 53: 4289-4298. 【IF=6.518】 [8] Liu Y, Dai F*. A damage constitutive model for intermittent jointed rocks under cyclic uniaxial compression. Int J Rock Mech Min. 2018, 103: 289-301. 【IF=6.849】 [9] Liu Y, Dai F*, Dong L, Xu NW, Feng P. Experimental investigation on the fatigue mechanical properties of intermittently jointed rock models under cyclic uniaxial compression with different loading parameters. Rock Mech Rock Eng. 2018, 51: 47-68. 【IF=6.518】 [10] Liu Y, Dai F*, Fan PX, Xu NW, Dong L. Experimental investigation of the influence of joint geometric configurations on the mechanical properties of intermittent jointed rock models under cyclic uniaxial compression. Rock Mech Rock Eng. 2017, 50: 1453-1471. 【IF=6.518】

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