Startseite Naturwissenschaften A Nonlinear Rheological Model for Rocks Considering the Tertiary Creep Stage
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A Nonlinear Rheological Model for Rocks Considering the Tertiary Creep Stage

  • Mo-Li Zhao und Wen Wang
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Abstract

In order to study the deformation mechanism of rock mass on long time scales, the rheology theory is used to analysis the creep behaviors and deformation features. Based on the laboratory results of the triaxial creep test on rock diabase, a nonlinear rheological model is established and has been generalized to threedimensional form. This model is verified by the laboratory test data and the numerical simulation. It is shown that the theoretical curves are matched to that of the previous laboratory tests.

Abstract

In order to study the deformation mechanism of rock mass on long time scales, the rheology theory is used to analysis the creep behaviors and deformation features. Based on the laboratory results of the triaxial creep test on rock diabase, a nonlinear rheological model is established and has been generalized to threedimensional form. This model is verified by the laboratory test data and the numerical simulation. It is shown that the theoretical curves are matched to that of the previous laboratory tests.

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  1. Frontmatter 1
  2. Keynote Speech I. Strategies for Improving Hydropower Development 5
  3. Keynote Speech II. Biotemplated Mesoporous Materials for Wastewater Treatments 7
  4. Keynote Speech III. Design of Hard and Superhard Nanocomposites for Harsh Environment 9
  5. Keynote Speech IV. Numerical Simulation of Slag Corrosion Behavior of Lightweight Refractories for Refining Ladles 11
  6. Keynote Speech V. Precision Plastic Forming of Large Complex Component of Ti-Alloy 13
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  8. Effects of Machining Process and Heat Treatment on the Mechanical Properties and Microstructure of TB2 Titanium Alloy Strip 25
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  17. Research and Preparation of Super Hydrophobic and Self-Cleaning PVDF Membrane 111
  18. Preparation and Characterization of TiB2 Coatings with Ultra-Low Residual Stress 125
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  85. Nanoscale Fe0 Supported on Three- Dimensional Graphene for the Removal of Methyl Orange from Water 813
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  88. Procurement Cost Control of New Energy Vehicles Manufacturing Enterprise under Supply Chain Management 833
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  105. Study on Biological Treatment -Fenton - Oxidation Treatment -Biological Treated Landfill Leachate 1009
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Heruntergeladen am 17.9.2025 von https://www.degruyterbrill.com/document/doi/10.1515/9783110516623-101/html
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