The shape of cement powder particles plays a crucial role in particle packing and hydration process of cement. However, cement powder is generally regarded as sphere for simplification in most cement hydration models. This paper aims to investigate the influence of cement particle shapes on hydration of Portland cement and microstructure of cement paste. A novel central growth model along with a particle packing algorithm is developed to generate cement particles with irregular shapes and reconstruct initial 3D microstructures of Portland cement. Afterwards, the hydration process of cement with different shapes are simulated using CEMHYD3D model. The results indicate that the generated irregular-shaped particles precisely reproduce the real...
Three-dimensional particle size distributions of unhydrated cement in cement paste were obtained fro...
This case study focuses on the quantification of the amorphous hydrate distribution in the microstru...
Concrete is a very complicated, random, multi-scale and multi-phase material. It is important to kno...
The pore structure plays a crucial role in durability performance of cement-based materials. However...
This paper presents a new cement hydration model (HYDCEM) to predict the microstructure evolution of...
The shape of cement particles plays an important role in the hydration process due to surface dissol...
This paper presents a new cement hydration model to predict the microstructure evolution of hydratin...
The conceptualization of a representative volume element (RVE) of hardened cement paste for numerica...
A new modelling framework, called μic, has been developed to enable simulations of complex particula...
AbstractRandom packing of particles in cement-based materials plays an important role in microstruct...
Equilibrium thermodynamic calculations, coupled to a kinetic model for the dissolution rates of clin...
Cement paste is a highly porous product of the chemical reactions of cement with water. The total p...
In this study, three-dimensional simulations of cement hydration are conducted to investigate the ef...
Efforts to model and simulate the highly complex cement hydration process over the past 40 years are...
The development of the elastic properties of a hardening cement paste results from the microstructur...
Three-dimensional particle size distributions of unhydrated cement in cement paste were obtained fro...
This case study focuses on the quantification of the amorphous hydrate distribution in the microstru...
Concrete is a very complicated, random, multi-scale and multi-phase material. It is important to kno...
The pore structure plays a crucial role in durability performance of cement-based materials. However...
This paper presents a new cement hydration model (HYDCEM) to predict the microstructure evolution of...
The shape of cement particles plays an important role in the hydration process due to surface dissol...
This paper presents a new cement hydration model to predict the microstructure evolution of hydratin...
The conceptualization of a representative volume element (RVE) of hardened cement paste for numerica...
A new modelling framework, called μic, has been developed to enable simulations of complex particula...
AbstractRandom packing of particles in cement-based materials plays an important role in microstruct...
Equilibrium thermodynamic calculations, coupled to a kinetic model for the dissolution rates of clin...
Cement paste is a highly porous product of the chemical reactions of cement with water. The total p...
In this study, three-dimensional simulations of cement hydration are conducted to investigate the ef...
Efforts to model and simulate the highly complex cement hydration process over the past 40 years are...
The development of the elastic properties of a hardening cement paste results from the microstructur...
Three-dimensional particle size distributions of unhydrated cement in cement paste were obtained fro...
This case study focuses on the quantification of the amorphous hydrate distribution in the microstru...
Concrete is a very complicated, random, multi-scale and multi-phase material. It is important to kno...