The examination of fracturing process subjected to triaxial compression test in Inada granite

被引:40
作者
Nishiyama, T [1 ]
Chen, YQ
Kusuda, H
Ito, T
Kaneko, K
Haruyuki, K
Sato, T
机构
[1] Kyoto Univ, Dept Energy Sci & Technol, Sakyo Ku, Kyoto 6068501, Japan
[2] Kansai Univ, Takatsuki, Osaka, Japan
[3] Hokkaido Univ, Sapporo, Hokkaido, Japan
[4] Mitsui Construct Co Ltd, Nagareyama, Japan
关键词
fracturing process; triaxial compression test; Inada granite; small-scale cracking; fluorescent approach;
D O I
10.1016/S0013-7952(02)00046-7
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The behavior of a granite subject to a triaxial compression test ranging from the prefailure stage to the postfailure stage was studied using a fluorescent technique from the geological point of view. Microscopic observations of the specimens at different stages showed changes in the failure process. The start of formation of new microcracks paralleled the compression direction through their propagation until the onset of faulting and ended with the failure of shear zones after the strength failure point. Pores chiefly identified in the feldspar increased in length and width in the early stages, but not in number. It seems that the effect of pore spaces did not have any effect of failure. The microcracks generated on angular edges of quartz or feldspar grains and around biotite grains with increasing compression force. The phenomenon appearing on the crystal boundaries among biotite and quartz or feldspar agrees with the result calculated based on the theory on stress fields with ellipsoidal inhomogeneity suggested by Eshelby. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:257 / 269
页数:13
相关论文
共 11 条
[1]   THE DETERMINATION OF THE ELASTIC FIELD OF AN ELLIPSOIDAL INCLUSION, AND RELATED PROBLEMS [J].
ESHELBY, JD .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL AND PHYSICAL SCIENCES, 1957, 241 (1226) :376-396
[2]   BEHAVIOR OF GRANITES AND LIMESTONES SUBJECTED TO SLOW AND HOMOGENEOUS TEMPERATURE-CHANGES [J].
HOMANDETIENNE, F ;
TROALEN, JP .
ENGINEERING GEOLOGY, 1984, 20 (03) :219-233
[3]  
MURA T, 1976, MICROMECHANICS, P19
[4]   IDENTIFICATION OF PORE SPACES AND MICROCRACKS USING FLUORESCENT RESINS [J].
NISHIYAMA, T ;
KUSUDA, H .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES & GEOMECHANICS ABSTRACTS, 1994, 31 (04) :369-375
[5]  
Paterson M.S., 1978, EXPT ROCK DEFORMATIO, P112
[6]   THEORY OF CONCENTRIC, KINK AND SINUSOIDAL FOLDING AND OF MONOCLINAL FLEXURING OF COMPRESSIBLE, ELASTIC MULTILAYERS .6. ASYMMETRIC FOLDING AND MONOCLINAL KINKING [J].
RECHES, Z ;
JOHNSON, AM .
TECTONOPHYSICS, 1976, 35 (04) :295-334
[7]   MICROFRACTURING AND INELASTIC DEFORMATION OF ROCK IN COMPRESSION [J].
SCHOLZ, CH .
JOURNAL OF GEOPHYSICAL RESEARCH, 1968, 73 (04) :1417-+
[8]   EXPERIMENTAL STUDY OF FRACTURING PROCESS IN BRITTLE ROCK [J].
SCHOLZ, CH .
JOURNAL OF GEOPHYSICAL RESEARCH, 1968, 73 (04) :1447-+
[9]  
Simmons G., 1971, SINGLE CRYSTAL ELAST
[10]   DEVELOPMENT OF STRESS-INDUCED MICROCRACKS IN WESTERLY GRANITE [J].
TAPPONNIER, P ;
BRACE, WF .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 1976, 13 (04) :103-112