Evaluating Microscale Failure Response of Various Weathering Grade Sandstones Based on Micro-Scale Observation and Micro-Structural Modelling Subjected to Wet and Dry Cycles

سال انتشار: 1401
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 80

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شناسه ملی سند علمی:

JR_JMAE-13-2_002

تاریخ نمایه سازی: 29 تیر 1401

چکیده مقاله:

The significance of rock failure can be found from the fact that microfracture genesis and coalescence in the rock mass results in macroscale fractures. Rock may fail due to an increase in the local stress, natural fractures, weathering inducing micro-crack genesis, coalescence, and propagation. Therefore, a comprehensive understanding of the micro-scale failure mechanism of various weathering grade sandstones based on micro-level observation and microstructure-based simulation is essential. The microscale failure response of various weathering grade sandstones is studied under the wet and dry cycles. Each sample is tested for the micro-structure and micro-fracture characteristics using the image analysis. Furthermore, the micrographs obtained are also used to create the microstructure-based models, which are then simulated in the ANSYS software. The findings indicate that the moderately weathered sandstones indicate less weight reduction than the slightly weathered sandstone. The results obtained also demonstrate that the wet and dry cycles have little effect on the particle shape and size. However, variation in the particle shape and size implies that this is a result of the prevailing interaction of rock and water particle. The microscale simulation reveal that both UCS and BTS decrease from ۳۷ MPa to ۱۹ MPa and ۹ MPa to ۴ MPa as the density of the micro-structure increases. The results reveal that the primary fracture deviation from the loading axis increases with increasing density in the micro-structural micro-structures, although this effect reduces with further increasing density in the micro-structures.

نویسندگان

Kausar Sultan shah

School of Material and Mineral Resources Engineering, Universiti Sains Malaysia, ۱۴۳۰۰, Nibong Tebal, Pulau, Malaysia

Mohd Hazizan Mohd Hashim

School of material and mineral resources engineering, USM, Malaysia

Hafeez Rehman

Department of Mining Engineering, Balochistan University of Information Technology, Engineering and Management Sciences, Quetta, Pakistan.

Kamar shah Ariffin

school of material and mineral resources engineering, USM, Malaysia

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  • Ghamgosar, M. (۲۰۱۷). Micromechanical and microstructural aspects affecting rock damage,‎ ...
  • Zuo, J., J. Wang, and Y. Jiang. (۲۰۱۹). Macro/meso failure ...
  • Shah, K.S., M.H.b.M. Hashim, M.Z. Emad, K.S.b. Ariffin, M. Junaid, ...
  • Monte Carlo Simulation-Based Uncertainty Integration into Rock Particle Shape Descriptor Distributions [مقاله ژورنالی]
  • Ougier-Simonin, A., F. Renard, C. Boehm, and S. Vidal-Gilbert. (۲۰۱۶). ...
  • Application of Stochastic Simulation in Assessing Effect of Particle Morphology on Fracture Characteristics of Sandstone [مقاله ژورنالی]
  • Photogrammetry and Monte Carlo Simulation based statistical characterization of rock mass discontinuity parameters [مقاله ژورنالی]
  • Zhu, Y. (۲۰۱۷). A micromechanics-based damage constitutive model of porous ...
  • Stead, D. and A. Wolter. (۲۰۱۵). A critical review of ...
  • A Preliminary Assessment of Rock Slope Stability in Tropical Climates: A Case Study at Lafarge Quarry, Perak, Malaysia [مقاله ژورنالی]
  • Yang, X., J. Wang, D. Hou, C. Zhu, and M. ...
  • Chen, X., P. He, and Z. Qin. (۲۰۱۸). Damage to ...
  • Yang, X., J. Wang, C. Zhu, M. He, and Y. ...
  • Wang, C., W. Pei, M. Zhang, Y. Lai, and J. ...
  • Tavallali, A. and A. Vervoort. (۲۰۱۰). Failure of layered sandstone ...
  • Song, Z., Y. Wang, H. Konietzky, and X. Cai. (۲۰۲۱). ...
  • Jaques, D.S., E.A.G. Marques, L.C. Marcellino, M.F. Leão, E.P.S. Ferreira, ...
  • Tuǧrul, A. (۲۰۰۴). The effect of weathering on pore geometry ...
  • Tating, F., R. Hack, and V. Jetten. (۲۰۱۵). Weathering effects ...
  • Shah, K.S., M.H.B. Mohd Hashim, H. Rehman, and K.S.B. Ariffin. ...
  • Bobich, J.K., Experimental analysis of the extension to shear fracture ...
  • Erarslan, N. and D.J. Williams. (۲۰۱۲). Experimental, numerical and analytical ...
  • Song, Z., M. Li, G. Yin, P.G. Ranjith, D. Zhang, ...
  • Mohamad, E.T., I. Komoo, K.A. Kassim, and N. Gofar. (۲۰۰۸). ...
  • Tating, F.F., H.R.G. Hack, and V.G. Jetten. (۲۰۱۹). Influence of ...
  • Ghobadi, M. and R. Babazadeh. (۲۰۱۵). Experimental studies on the ...
  • Emeh, C. and O. Igwe. (۲۰۱۷). Variations in soils derived ...
  • Yang, S.-Q., Y.-H. Huang, Y.-Y. Jiao, W. Zeng, and Q.-L. ...
  • Cullers, R.L. (۲۰۰۰). The geochemistry of shales, siltstones and sandstones ...
  • Pittman, E.D. (۱۹۷۹). Porosity diagenesis and productive capability of sandstone ...
  • Zhang, Z., Y. Shi, H. Li, and W. Jin. (۲۰۱۶). ...
  • Liu, D., W. Sun, and D. Ren. (۲۰۱۹). Experimental investigation ...
  • Hamdi, P., D. Stead, and D. Elmo. (۲۰۱۵). Characterizing the ...
  • Jaeger, J.C., N.G. Cook, and R. Zimmerman, Fundamentals of rock ...
  • Sima, L., C. Wang, L. Wang, F. Wu, L. Ma, ...
  • Griffiths, L., M.J. Heap, T. Xu, C.-f. Chen, and P. ...
  • Bubeck, A., R. Walker, D. Healy, M. Dobbs, and D. ...
  • Germanovich, L. and A. Dyskin. (۲۰۰۰). Fracture mechanisms and instability ...
  • Dyskin, A. (۱۹۹۹). On the role of stress fluctuations in ...
  • Diederichs, M.S. (۲۰۰۷). The ۲۰۰۳ Canadian Geotechnical Colloquium: Mechanistic interpretation ...
  • نمایش کامل مراجع