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      KCI등재 SCIE SCOPUS

      CT Experimental Study on the Damage Characteristics of Anchored Layered Rocks

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      https://www.riss.kr/link?id=A105917582

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      다국어 초록 (Multilingual Abstract)

      A laboratory physical simulation and a CT scan test were conducted to analyze the anchoring mechanism of a system anchor bolt and a steel floral pipe in a layered rock mass. The following conclusions were drawn: (1) The anchoring effect of the system ...

      A laboratory physical simulation and a CT scan test were conducted to analyze the anchoring mechanism of a system anchor bolt and a steel floral pipe in a layered rock mass. The following conclusions were drawn: (1) The anchoring effect of the system anchor bolt and steel floral pipe improves the strength parameter of the layered rock, and the system anchor bolt provides higher improvement. Neglecting the jointing effect, the improvement in the strength parameter of the layered rock due to the anchor bolt is primarily reflected by the following three aspects: the compressive zone effect of the preload, the repairing effect of the anchoring agent on defects in country rocks, and the reinforcement effect of the anchor bolt on the overall strength and density of the anchoring object. Considering the jointing effect, the improvement in the strength parameter of the layered rock due to the anchor bolt is reflected by improvement in the deformability and shear strength of the joint surface. (2) The stress-strain curves of the anchored specimens can be divided into different stages of damage evolution, based on the angles of bedding. (3) The crack-arresting effect of the anchor bolt is due to the weakening, cutting, and arresting of the cracks in the anchorage zone. The larger the anchorage zone, the better is the crack-arresting effect.

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      참고문헌 (Reference)

      1 Kawakata, H., "The observations of faulting in westerly granite under triaxial compression by X-ray CT scan" 34 (34): 151-162, 1997

      2 Yang, Y., "The effect of bolting on the increase of rock crack toughness" 6 (6): 1-9, 1994

      3 Freeman, T. J., "The behaviour of fully-bonded rock bolts in the Kielder experimental tunnel" 10 (10): 37-40, 1978

      4 Yang, J., "Test study on the complete deformation property of bolted stratified surrounding rock masses" 30 (30): 414-417, 2005

      5 Zhang, W., "Synthetical deformation analysis of anchor bolt in jointed rock mass" 33 (33): 1067-1074, 2012

      6 Wang, G., "Study of stability of anchoring jointed rockmass under seepage pressure" 30 (30): 2843-2849, 2009

      7 Dai, Y., "Study of crack propagation of unsaturated slate by CT tests" 25 (25): 2537-2545, 2006

      8 Li, S., "Study of CT meso-experiment of rock damage under cyclic load" 28 (28): 1604-1609, 2009

      9 Farmer, I. W., "Stress distribution along a resin grouted rock anchor" 12 (12): 347-351, 1975

      10 Chen, J., "Stress and action mechanism of rock bolt in loess tunnel" 30 (30): 1690-1697, 2011

      1 Kawakata, H., "The observations of faulting in westerly granite under triaxial compression by X-ray CT scan" 34 (34): 151-162, 1997

      2 Yang, Y., "The effect of bolting on the increase of rock crack toughness" 6 (6): 1-9, 1994

      3 Freeman, T. J., "The behaviour of fully-bonded rock bolts in the Kielder experimental tunnel" 10 (10): 37-40, 1978

      4 Yang, J., "Test study on the complete deformation property of bolted stratified surrounding rock masses" 30 (30): 414-417, 2005

      5 Zhang, W., "Synthetical deformation analysis of anchor bolt in jointed rock mass" 33 (33): 1067-1074, 2012

      6 Wang, G., "Study of stability of anchoring jointed rockmass under seepage pressure" 30 (30): 2843-2849, 2009

      7 Dai, Y., "Study of crack propagation of unsaturated slate by CT tests" 25 (25): 2537-2545, 2006

      8 Li, S., "Study of CT meso-experiment of rock damage under cyclic load" 28 (28): 1604-1609, 2009

      9 Farmer, I. W., "Stress distribution along a resin grouted rock anchor" 12 (12): 347-351, 1975

      10 Chen, J., "Stress and action mechanism of rock bolt in loess tunnel" 30 (30): 1690-1697, 2011

      11 Haas, C. J., "Shear resistance of rock bolts" 260-261, 1976

      12 Windsor, C. R., "Rock reinforcement systems" 34 (34): 919-951, 1997

      13 Zhang, B., "Reinforcement of rock mass with cross-flaws using rock bolt" 51 (51): 346-353, 2016

      14 Yang, S., "Reinforcement of bolt in joints" 23 (23): 604-607, 2002

      15 Feng, X., "Real-time Computerized Tomography (CT) experiments on sandstone damage evolution during triaxial compression with chemical corrosion" 41 (41): 181-192, 2004

      16 Hou, C., "Mechanical study on strength enhancement for the rocks surrounding roadway supported by bolt" 19 (19): 342-345, 2000

      17 Zhang, N., "Experimental study on reinforced effect of bolts on 3D surface fractured rock under uniaxial tension" 33 (33): 769-776, 2011

      18 Yang, Y., "Deformation and failure process of anchoring stratified rock mass and the reinforcement effect analysis mode" 13 (13): 309-317, 1994

      19 Zhu, H., "CT identification of micro cracks evolution for rock materials" 30 (30): 1230-1238, 2011

      20 Raynaud, S., "Brittle-to-ductile transition in Beaucaire marl from triaxial tests under the CT-scanner" 45 : 653-671, 2008

      21 Guo, J., "Anchoring mechanism and effect of systematic rockbolt for shallow buried loess tunnel" 31 (31): 870-874, 2010

      22 Li, C., "Analytical models for rock bolts" 36 (36): 1013-1029, 1999

      23 Carranza-Torres, C., "Analytical and numerical study of the mechanics of rockbolt reinforcement around tunnels in rock masses" 42 (42): 175-228, 2009

      24 Raynaud, S., "Analysis of the internal structure of rocks and characterization of mechanical deformation by a non-destructive method: X-ray tomodensitometry" 159 (159): 149-159, 1989

      25 Guo, X., "Analysis of efficacy of rock bolt for tunnel support stucture" 28 (28): 2234-2239, 2007

      26 Zhang, W., "Analysis of deformation characteristics of prestressed anchor bolt based on shear test" 35 (35): 2231-2240, 2014

      27 Cai, Y., "An analytical model to predict axial load in grouted rock bolt for soft rock tunnelling" 19 (19): 607-618, 2004

      28 Ma, S., "An analytical model of fully grouted rock bolts subjected to tensile load" 49 (49): 519-526, 2013

      29 Cai, Y., "An analytical model considering interaction behavior of grouted rock bolts for convergence-confinement method in tunneling design International" 76 (76): 112-126, 2015

      30 Liu, Q., "Advance and review on the anchoring mechanism in deep fractured rock mass" 35 (35): 312-332, 2016

      31 Zhang, Q., "A reinforcement model of damaged cylindrical bolt element for jointed rock mass and its application" 19 (19): 19-24, 1998

      32 Yang, S., "A new constitutive model of the layered rock mass reinforced with bolts" 13 (13): 309-317, 2001

      33 Zhu, F., "'Support action analysis of tensioned and grouted bolts" 15 (15): 333-337, 1996

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-05-27 학술지명변경 한글명 : 대한토목학회 영문논문집 -> KSCE Journal of Civil Engineering KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2002-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.59 0.12 0.49
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.42 0.39 0.286 0.06
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