4.7 Article

Rheological Characteristics of Cement Grout and its Effect on Mechanical Properties of a Rock Fracture

期刊

ROCK MECHANICS AND ROCK ENGINEERING
卷 51, 期 2, 页码 613-625

出版社

SPRINGER WIEN
DOI: 10.1007/s00603-017-1340-x

关键词

Rheological properties; Water-cement ratio; Fractured rock mass; Mechanical properties; Grouting reinforcement

资金

  1. Surface Project of the Natural Science Foundation of China [51774267]
  2. State Key Laboratory of Geomechanics and Geotechnical Engineering
  3. National Natural Science Foundation of China [51474205]
  4. national key basic research development plan (973) project [2014CB046904]

向作者/读者索取更多资源

Grouting reinforcement, which has an obvious strengthening effect on fractured rock mass, has been widely used in various fields in geotechnical engineering. The rheological properties of grout will greatly affect its diffusion radius in rock fractures, and the water-cement ratio is an important factor in determining the grouting flow patterns. The relationship between shear stress and shear rate which could reflect the grout rheological properties, the effects of water-cement ratio, and temperature on the rheological properties of grouting was studied in the laboratory. Besides, a new method for producing fractured rock specimens was proposed and solved the problem of producing natural fractured rock specimens. To investigate the influences of grouting on mechanical properties of a rock fracture, the fractured rock specimens made using the new method were reinforced by grouting on the independent designed grouting platform, and then normal and tangential mechanical tests were carried out on fractured rock specimens. The results showed that the mechanical properties of fractured rock mass are significantly improved by grouting, the peak shear strength and residual strength of rock fractures are greatly improved, and the resistance to deformation is enhanced after grouting. Normal forces affect the tangential behavior of the rock fracture, and the tangential stress strength increases with normal forces. The strength and stability of fractured rock mass are increased by grouting reinforcement.

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