Observation of the Degradation Characteristics and Scale of Unevenness on Three-dimensional Artificial Rock Joint Surfaces Subjected to Shear
Autor: | Ki-Il Song, Gye-Chun Cho, Tae-Hyuk Kwon, Eun-Soo Hong |
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Rok vydání: | 2015 |
Předmět: |
Logarithmic scale
Shearing (physics) 0211 other engineering and technologies Geology 02 engineering and technology Surface finish 010502 geochemistry & geophysics Geotechnical Engineering and Engineering Geology 01 natural sciences Shear (geology) Geotechnical engineering Profilometer Direct shear test Joint (geology) 021101 geological & geomatics engineering 0105 earth and related environmental sciences Civil and Structural Engineering Asperity (materials science) |
Zdroj: | Rock Mechanics and Rock Engineering. 49:3-17 |
ISSN: | 1434-453X 0723-2632 |
DOI: | 10.1007/s00603-015-0725-y |
Popis: | The present study explores the degradation characteristics and scale of unevenness (small-scale roughness) on sheared rock joint surfaces at a low-stress regime. While the degradation characteristics of unevenness and the normal stress are mutually interrelated, an understanding of the degradation patterns of the three-dimensional roughness of rock joints is one of the important components needed to identify asperity failure characteristics and to quantify the role of damaged unevenness in establishing a shear strength model. A series of direct shear tests was performed on three-dimensional artificial rock joint surfaces at different normal stress levels. After shearing, the spatial distributions and statistical parameters of degraded roughness were analysed for the different normal stress levels. The length and area of the degraded zones showed bell-shaped distributions in a logarithmic scale, and the dominant scale (or the most frequently occurring scale) of the damaged asperities (i.e., unevenness) ranged from approximately, 0.5 to 5.0 mm in length and 0.1–10 mm2 in area. This scale of the damaged unevenness was consistent regardless of the level of normal stress. It was also found that the relative area of damaged unevenness on a given joint area, and thus the contribution of the mechanical asperity failure component to shear strength increased as normal stress increased. |
Databáze: | OpenAIRE |
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