A Lagrangian particle-based method, the smooth particle hydrodynamics, is used to model the flow of ultra-high-performance, self-compacting concretes containing short steel fibres which behave like a non-Newtonian fluid described by a Bingham-type constitutive model. An incompressible smooth particle hydrodynamics method is used to simulate the flow after the kink in the shear stress against the shear strain rate constitutive equation is first appropriately smoothed out. One of the key factors that ensures the strength and durability of an ultra-high-performance concrete is the orientation of the fibres within the concrete structures cast from the ultra-high performance, self-compacting concretes. Therefore, this paper mainly focuses on dev...
The flow of Bingham non-Newtonian incompressible fluids like concrete is associated with the large d...
© 2019 Elsevier Ltd In this paper, a numerical method is developed to simulate the flow of self-cons...
A range of SCC mixes with 28-day cube compressive strength between 30 and 80 MPa has been prepared i...
A Lagrangian particle-based method, the smooth particle hydrodynamics, is used to model the flow of ...
A Lagrangian particle-based method, smooth particle hydrodynamics (SPH), is used in this paper to mo...
In part I of this two-part paper, a three-dimensional Lagrangian smooth particle hydrodynamics metho...
Steel fibre has become an attractive alternative to the steel bar reinforcement in self-compacting c...
The three-dimensional Lagrangian particle-based smooth particle hydrodynamics method described in Pa...
Due to the demand for highly durable concrete structures, Self-Compacting Concrete (SCC) with its un...
A simple method has been developed to assess the orientation and distribution of short steel fibres ...
Due to the demand forhighly durable concrete structures, self-compacting concrete (SCC)with ...
The industry has embraced self-compacting concrete (SCC) to overcome deficiencies related to consoli...
The industry has embraced self-compacting concrete (SCC) to overcome deficiencies related to consoli...
The three-dimensional Lagrangian-particle-based smooth particle hydrodynamics methodology was used t...
Accurate prediction of self-compacting fibre reinforced concrete (SCFRC) flow, passing and filling b...
The flow of Bingham non-Newtonian incompressible fluids like concrete is associated with the large d...
© 2019 Elsevier Ltd In this paper, a numerical method is developed to simulate the flow of self-cons...
A range of SCC mixes with 28-day cube compressive strength between 30 and 80 MPa has been prepared i...
A Lagrangian particle-based method, the smooth particle hydrodynamics, is used to model the flow of ...
A Lagrangian particle-based method, smooth particle hydrodynamics (SPH), is used in this paper to mo...
In part I of this two-part paper, a three-dimensional Lagrangian smooth particle hydrodynamics metho...
Steel fibre has become an attractive alternative to the steel bar reinforcement in self-compacting c...
The three-dimensional Lagrangian particle-based smooth particle hydrodynamics method described in Pa...
Due to the demand for highly durable concrete structures, Self-Compacting Concrete (SCC) with its un...
A simple method has been developed to assess the orientation and distribution of short steel fibres ...
Due to the demand forhighly durable concrete structures, self-compacting concrete (SCC)with ...
The industry has embraced self-compacting concrete (SCC) to overcome deficiencies related to consoli...
The industry has embraced self-compacting concrete (SCC) to overcome deficiencies related to consoli...
The three-dimensional Lagrangian-particle-based smooth particle hydrodynamics methodology was used t...
Accurate prediction of self-compacting fibre reinforced concrete (SCFRC) flow, passing and filling b...
The flow of Bingham non-Newtonian incompressible fluids like concrete is associated with the large d...
© 2019 Elsevier Ltd In this paper, a numerical method is developed to simulate the flow of self-cons...
A range of SCC mixes with 28-day cube compressive strength between 30 and 80 MPa has been prepared i...