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Published in: Rock Mechanics and Rock Engineering 2/2010

01-03-2010 | Original Paper

Dilation and Spalling in Axially Compressed Beams Subjected to Bending

Authors: N. Cho, C. D. Martin, D. C. Sego, J. Jeon

Published in: Rock Mechanics and Rock Engineering | Issue 2/2010

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Abstract

Laboratory testing of rectangular beams using a synthetic rock was used to investigate the onset of dilation and spalling. The beams are axially compressed and subjected to 4-point bending to provide non-uniform compressive stresses. The maximum tangential stress occurs at the top of the beam and rapidly decreases with distance from the top of the beam. This stress distribution was used to simulate the maximum tangential stress distribution found around circular excavations. The results showed using this beam test configuration that the onset of dilation based on beam displacement and visually observed spalling began at approximately the same stress level. Discrete element numerical analyses (particle flow code) were used to evaluate the stress path at various locations in the beams. The analyses revealed that spalling and dilation in the beams occurred well below the peak strength failure envelope determined from conventional laboratory tests. The findings suggest that the onset of dilation in laboratory tests appears to be a good indicator for assessing the stress magnitudes required to initiate spalling.

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Metadata
Title
Dilation and Spalling in Axially Compressed Beams Subjected to Bending
Authors
N. Cho
C. D. Martin
D. C. Sego
J. Jeon
Publication date
01-03-2010
Publisher
Springer Vienna
Published in
Rock Mechanics and Rock Engineering / Issue 2/2010
Print ISSN: 0723-2632
Electronic ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-009-0049-x

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