Cite this article as: |
Xiao-ming Sun, Yong Zhang, Dong Wang, Jun Yang, Hui-chen Xu, and Man-chao He, Mechanical properties and supporting effect of CRLD bolts under static pull test conditions, Int. J. Miner. Metall. Mater., 24(2017), No. 1, pp. 1-9. https://doi.org/10.1007/s12613-017-1372-y |
Xiao-ming Sun E-mail: sxmcumtb@163.com
[1] |
M. C. He, H. P. Xie, S. P. Peng, and Y. D. Jiang, Study on rock mechanics in deep mining engineering, Chin. J. Rock. Mech. Eng., 24(2005), No. 16, p. 2803.
|
[2] |
M. C. He, Latest progress of soft rock mechanics and engineering in China, J. Rock Mech. Geotech. Eng., 6(2014), No. 3, p. 165.
|
[3] |
C. Fairhurst, Deformation, yield, rupture and stability of excavations at depth in rock,[in] D. Fourmaintraux and V. Maury, Rock at Great Depth, Balkema, Rotterdam, 1989, p. 1103.
|
[4] |
M. C. He and X. M. Sun, China Coal Mine Soft Rock Engineering Supporting Design and Construction Guide, Science Press, Beijing, 2004, p. 109.
|
[5] |
M. C. He, H. H. Jing, and X. M. Sun, Soft Rock Engineering Mechanics, Science Press, Beijing, 2002, p. 6.
|
[6] |
X. M. Sun, G. F. Zhang, F. Cai, and S. B. Yu, Asymmetric deformation mechanism within inclined rock strata induced by excavation in deep roadway and its controlling countermeasures, Chin. J. Rock. Mech. Eng., 28(2009), No. 6, p. 1137.
|
[7] |
X. M. Sun, D. Wang, J. L. Feng, C. Zhang, and Y. W. Chen, Deformation control of asymmetric floor heave in a deep rock roadway:a case study, Int. J. Min. Sci. Technol., 24(2014), No. 6, p. 799.
|
[8] |
H. P. Kang, J. H. Wang, and J. Lin, Case studies of rock bolting in coal mine roadways, Chin. J. Rock Mech. Eng., 29(2010), No. 4, p. 649.
|
[9] |
A. J. Jager, Two new support units for the control of rockburst damage,[in] P. K. Kaiser and D. R. McCreath, Rock Support in Mining and Underground Construction, Balkema, Rotterdam, 1992, p. 621.
|
[10] |
L. St-Pierre, F. P. Hassani, P. H. Radziszewski, and J. Ouellet, Development of a dynamic model for a cone bolt, Int. J. Rock Mech. Min. Sci., 46(2009), No. 1, p. 107.
|
[11] |
C. C. Li and P. I. Marklund, Field tests of the cone bolt in the Boliden mines,[in] Annual Meeting of Rock Mechanics, Stockholm, 2005, p. 33.
|
[12] |
M. Cai, Principles of rock support in burst-prone ground, Tunnelling Underground Space Technol., 36(2013), p. 46.
|
[13] |
R. Varden, R. Lachenicht, J. R. Player, A. G. Thompson, and E. Villaescusa, Development and implementation of the Garford dynamic bolt at the Kanowna Belle mine,[in] 10th Underground Operators Conference, Launceston, Aus IMM, Melborune, 2008, p. 95.
|
[14] |
F. Charette and M. Plouffe, A new rock bolt concept for underground excavations under high stress conditions,[in] Sixth International Symposium on Ground Support in Mining and Civil Engineering Construction, SAIMM, Johannesburg, 2008, p. 225.
|
[15] |
C. L. Charlie, A new energy-absorbing bolt for rock support in high stress rock masses, Int. J. Rock Mech. Min. Sci., 47(2010), No. 3, p. 396.
|
[16] |
C. J. Hou and Y. N. He, Principle and application of rockbolts with extensible rod, Chin. J. Rock Mech. Eng., 16(1997), No. 6, p. 544.
|
[17] |
D. D. Tannant and B. W. Buss, Yielding rockbolt anchors for high convergence or rockburst conditions,[in] Proceedings of the 47th Canadian Geotechnical Conference, Halifax, 1994, p. 10.
|
[18] |
A. Ansell, Laboratory testing of a new type of energy absorbing rock bolt, Tunnelling Underground Space Technol., 20(2005), No. 4, p. 291.
|
[19] |
M. C. He, W. L. Gong, J Wang, P. Qi, Z. G. Tao, S. Du, and Y. Y. Peng, Development of a novel energy-absorbing bolt with extraordinarily large elongation and constant resistance, Int. J. Rock Mech. Min. Sci., 67(2014), p. 29.
|
[20] |
M. C. He and Z. B. Guo, Mechanical property and engineering application of anchor bolt with constant resistance and large deformation, Chin. J. Rock Mech. Eng., 33(2014), No. 7, p. 1297.
|
[21] |
X. M. Sun, D. Wang, C. Wang, X. Liu, B. Zhang, and Z. Q. Liu, Tensile properties and application of constant resistance and large deformation bolts, Chin. J. Rock Mech. Eng., 33(2014), No. 9, p. 1765.
|
[22] |
A. E. H. Love, A Treatise on the Mathematical Theory of Elasticity. 4th Ed., Cambridge University Press, Cambridge, 1927, p. 68.
|
[23] |
R. Lakes, Foam structures with a negative Poisson's ratio, Science, 235(1987), p. 1038.
|
[24] |
E. A. Friis, R. S. Lakes, and J. B. Park, Negative Poisson's ratio polymeric and metallic foams, J. Mater. Sci., 23(1988), No. 12, p. 4406.
|
[25] |
M. A. Loureiro and R. S. Lakes, Scale-up of transformation of negative Poisson's ratio foam:slabs, Cell. Polym., 16(1997), No. 5, p. 349.
|
[26] |
K. E. Evans, M. A. Nkansah, and I. J. Hutchinson, and S. C. Rogers, Molecular network design, Nature, 353(1991), No. 6340, p. 124.
|
[27] |
M. B. Yang, X. Yang, Z. M. Li, and J. M. Feng, The structure and properties of the material with negative Poisson's ratio, Polym. Mater. Sci. Eng., 17(2001), No. 6, p. 15.
|
[28] |
Z. C. Yang and Q. T. Deng, Mechanical property and application of materials and structures with negative Poisson's ratio, Adv. Mech., 41(2011), No. 3, p. 335.
|