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[11].
Nano-scale mechanical properties of constituent minerals in shales investigated by combined nanoindentation statistical analyses and SEM-EDS-XRD techniques.
International Journal of Rock Mechanics and Mining Sciences.
159. 105187. 2022. 第一作者.
[12].
Determination of Mechanical Property Evolutions of Shales by Nanoindentation and High-Pressure CO2 and Water Treatments: A Nano-to-Micron Scale Experimental Study.
Rock Mechanics and Rock Engineering.
55 (12). 7629-7655. 2022. 第一作者.
[13].
Probing nanomechanical properties of a shale with nanoindentation: heterogeneity and the effect of water–shale interactions.
Energy & Fuels.
35 (15). 11930-11946. 2021. 第一作者.
[14].
Characterizing mechanical heterogeneity of coal at nano-to-micro scale using combined nanoindentation and FESEM-EDS.
International Journal of Coal Geology.
261. 104081. 2022.
[15].
Nano-scale mechanical characterization of shale using nanoindentation: an experiment work.
第一作者.
[16].
The propagation of hydraulic fractures in a natural fracture network: A numerical study and its implications.
12 (9). 4738. 2022. 第一作者.
[17].
Fracture initiation and propagation under different perforation orientation angles in supercritical CO2 fracturing.
Journal of Petroleum Science and Engineering.
[18].
Mechanical properties and fracture behavior of flawed granite under dynamic loading.
Soil Dynamics and Earthquake Engineering.
[19].
Advantages of supercritical CO2 compound fracturing in shale on fracture geometry, complexity and width.
Journal of Natural Gas Science and Engineering.
[20].
The influence of temperatures on mixed-mode (I+II) and mode-II fracture toughness of sandstone.
Engineering Fracture Mechanics.
189. 51-63. 2017.
共21条 2/3
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