The effects of including cellulose nanofibers (CNFs) in Ultra High Performance Concretes (UHPCs) have been studied in this paper in terms of recovery of both durability and mechanical properties because of the stimulated self-healing behavior. To this purpose, flexural tests on 4-point bending on 30 mm thin and 100 mm wide beam specimens have been carried out to evaluate the mechanical recovery due to self-healing, together with Double Edge Wedge Splitting tests that have been performed to identify the tensile stress crack-opening behavior. Moreover, water permeability and chloride diffusion tests have been performed to evaluate the recovery of durability properties on healed specimens subjected to extremely aggressive environments rich in ...
The effects of alumina nano-fibres are investigated in this paper on the mechanical performance of U...
More than one century after its massive introduction in the building industry, concrete is still the...
Residual tensile strength, controlled crack propagation with small cracks at the ultimate loading co...
The effects of including cellulose nanofibers (CNFs) in Ultra High Performance Concretes (UHPCs) hav...
Ultrahigh-performance fiber-reinforced concrete (UHPFRC) features outstanding durability properties ...
Ultra high performance concrete (UHPC) is a material known for its high compressive strength (greate...
he present paper summarizes the experience of the last four years regarding the use of nanomaterials...
Ultra high-strength concrete (\u3e200 MPa) is marked by brittle behavior. In this work, we are rein...
Pervious concrete has good water permeability and, if used in construction, it can alleviate the hea...
During the last years, incorporation of nano-constituents into cement-based construction materials h...
The effects of alumina nano-fibres are investigated in this paper on the mechanical performance of U...
The effects of alumina nano-fibres are investigated in this paper on the mechanical performance of U...
More than one century after its massive introduction in the building industry, concrete is still the...
Residual tensile strength, controlled crack propagation with small cracks at the ultimate loading co...
The effects of including cellulose nanofibers (CNFs) in Ultra High Performance Concretes (UHPCs) hav...
Ultrahigh-performance fiber-reinforced concrete (UHPFRC) features outstanding durability properties ...
Ultra high performance concrete (UHPC) is a material known for its high compressive strength (greate...
he present paper summarizes the experience of the last four years regarding the use of nanomaterials...
Ultra high-strength concrete (\u3e200 MPa) is marked by brittle behavior. In this work, we are rein...
Pervious concrete has good water permeability and, if used in construction, it can alleviate the hea...
During the last years, incorporation of nano-constituents into cement-based construction materials h...
The effects of alumina nano-fibres are investigated in this paper on the mechanical performance of U...
The effects of alumina nano-fibres are investigated in this paper on the mechanical performance of U...
More than one century after its massive introduction in the building industry, concrete is still the...
Residual tensile strength, controlled crack propagation with small cracks at the ultimate loading co...