The influence of particle breakage on soil behaviour is important from theoretical and practical perspectives. Particle breakage changes the internal energy in two ways. First, internal energy is consumed for particle crushing and second, the internal energy changes because of additional volumetric strain caused by particle crushing. These two effects may be quantified by use of Frictional State Theory. The analysed drained triaxial compression tests of Toyoura sand, gravel and Dog's Bay sand at different stress level and stress path revealed that the effect of particle breakage is a function of soil gradation, strength of soil grains, stress level and stress path
A series of triaxial compression tests of frozen sandy soil are carried out under five confining pre...
The stress-strain relationship of frozen soil is a hot research topic in the field of frozen soil me...
Gravelly soils exhibit complicated mechanical behaviours closely related to particle breakage and re...
The influence of particle breakage on soil behaviour is important from theoretical and practical per...
Dilation and breakage energy dissipation of four different granular soils are investigated by using ...
Foundations are considered as the backbone of a structure. Most of the times, the foundation is laid...
Particle breakage occurs in granular materials with various engineering applications, such as when d...
AbstractA detailed investigation was carried out on a silty sand from Boštanj, Slovenia, in order to...
Particle breakage plays a relevant role on the stress-strain behavior of rockfills. As is widely rec...
AbstractIt is well known that particle crushing plays a critical role in the mechanical behavior of ...
Granular soils can be found in natural slope, foundation base and embankments. It is subjected to s...
This article presents a fundamental study on the role of particle breakage on the shear behavior of ...
The particle breakage behaviour of coarse grains during shearing of a gravelly granular assemblage c...
Oedometer tests were conducted to investigate whether particle breakage plays a significant role in ...
Copyright © 2013 Omar H. Al Hattamleh et al. This is an open access article distributed under the Cr...
A series of triaxial compression tests of frozen sandy soil are carried out under five confining pre...
The stress-strain relationship of frozen soil is a hot research topic in the field of frozen soil me...
Gravelly soils exhibit complicated mechanical behaviours closely related to particle breakage and re...
The influence of particle breakage on soil behaviour is important from theoretical and practical per...
Dilation and breakage energy dissipation of four different granular soils are investigated by using ...
Foundations are considered as the backbone of a structure. Most of the times, the foundation is laid...
Particle breakage occurs in granular materials with various engineering applications, such as when d...
AbstractA detailed investigation was carried out on a silty sand from Boštanj, Slovenia, in order to...
Particle breakage plays a relevant role on the stress-strain behavior of rockfills. As is widely rec...
AbstractIt is well known that particle crushing plays a critical role in the mechanical behavior of ...
Granular soils can be found in natural slope, foundation base and embankments. It is subjected to s...
This article presents a fundamental study on the role of particle breakage on the shear behavior of ...
The particle breakage behaviour of coarse grains during shearing of a gravelly granular assemblage c...
Oedometer tests were conducted to investigate whether particle breakage plays a significant role in ...
Copyright © 2013 Omar H. Al Hattamleh et al. This is an open access article distributed under the Cr...
A series of triaxial compression tests of frozen sandy soil are carried out under five confining pre...
The stress-strain relationship of frozen soil is a hot research topic in the field of frozen soil me...
Gravelly soils exhibit complicated mechanical behaviours closely related to particle breakage and re...