The current work provides an integrated analysis of autogenous shrinkage, isothermal calorimetry, and modulus of elasticity measurement through ambient response method (EMM-ARM), to characterise the hardening behaviour of a non-proprietary and more eco-friendly ultra-high performance fibre reinforced cementitious composite (UHPFRC). Isothermal calorimetry revealed that induction period ends at 3 h, and the rapid evolution of hydration heat occurs up to 9 h. Then, the hydration reaction still undergoes but at a very slow rate. The autogenous shrinkage exhibited a strong increase, particularly in the first 6 h, after which a dramatic reduction in the slope of the curves occurred, corroborating with the heat of hydration measurements. The modu...
Ultra-High Performance Concretes (UHPC) are cement-based materials with a very low water-to-binder r...
Nowadays, in Europe, several infrastructures, such as bridges, viaducts, and maritime structures, ar...
The ultra-high-performance fiber-reinforced cementitious composite (UHPFRC) is a new generation of b...
The current work provides an integrated analysis of autogenous shrinkage, isothermal calorimetry, an...
Material characterization tests of a UHPFRC were performed at various ages. A linear relationship wa...
UHPFRC has become one of the most promising cement-based materials for the next generation of infras...
The current work presents the continuous monitoring of the early stiffness evolution of an UHPFRC (U...
This paper focuses on the experimental characterisation and numerical modelling of mechanical ageing...
Ultra High Performance Fibre-Reinforced Concrete (UHPFRC) is a recent kind of concrete which incorpo...
The main goal of the current paper is to optimize ultra-high performance cementitious material (UHPC...
This paper addresses the tensile response of Strain Hardening Ultra High Performance Fiber Reinforce...
Ultra-high-performance concrete (UHPC) can be vulnerable to variations in materials properties and e...
The effects of the type and content of fibers, water to cement ratio (W/C), and content of cementiti...
This study focuses on the early-age shrinkage of ultra-high performance concrete (UHPC) with high-vo...
Here, the intrinsic driving mechanisms of autogenous shrinkage for Ultra-High Performance Concrete (...
Ultra-High Performance Concretes (UHPC) are cement-based materials with a very low water-to-binder r...
Nowadays, in Europe, several infrastructures, such as bridges, viaducts, and maritime structures, ar...
The ultra-high-performance fiber-reinforced cementitious composite (UHPFRC) is a new generation of b...
The current work provides an integrated analysis of autogenous shrinkage, isothermal calorimetry, an...
Material characterization tests of a UHPFRC were performed at various ages. A linear relationship wa...
UHPFRC has become one of the most promising cement-based materials for the next generation of infras...
The current work presents the continuous monitoring of the early stiffness evolution of an UHPFRC (U...
This paper focuses on the experimental characterisation and numerical modelling of mechanical ageing...
Ultra High Performance Fibre-Reinforced Concrete (UHPFRC) is a recent kind of concrete which incorpo...
The main goal of the current paper is to optimize ultra-high performance cementitious material (UHPC...
This paper addresses the tensile response of Strain Hardening Ultra High Performance Fiber Reinforce...
Ultra-high-performance concrete (UHPC) can be vulnerable to variations in materials properties and e...
The effects of the type and content of fibers, water to cement ratio (W/C), and content of cementiti...
This study focuses on the early-age shrinkage of ultra-high performance concrete (UHPC) with high-vo...
Here, the intrinsic driving mechanisms of autogenous shrinkage for Ultra-High Performance Concrete (...
Ultra-High Performance Concretes (UHPC) are cement-based materials with a very low water-to-binder r...
Nowadays, in Europe, several infrastructures, such as bridges, viaducts, and maritime structures, ar...
The ultra-high-performance fiber-reinforced cementitious composite (UHPFRC) is a new generation of b...