Ternary clay-based composite material (TCC), composed of lime, clay and sand, and usually modified with sticky rice and other organic compounds as additives, was widely used historically in Chinese construction and buildings due to its high mechanical performance. In this study, to gain an insight into the micromechanical mechanism of this cementitious material, the nanomechanical properties and volume fraction of mechanically different phases of the binder matrix are derived from the analysis of grid nanoindentation tests. Results show that there are five distinct mechanical phases, where the calcium silicate hydrate (C-S-H) and geopolymer present in the binder matrix are almost identical to those produced in ordinary Portland cement (OPC)...
ABSTRACT: In this paper, micro-mechanical properties of styrene–butadiene rubber (SBR) latex-modifie...
International audienceNano-indentation experiments are carried out on two cement pastes in order to ...
Recent progress in nanoscience and technology makes it possible to assess the mechanical properties ...
Ternary clay-based composite material (TCC), composed of lime, clay and sand, and usually modified w...
This paper aims to present the experimental results involving the use of nanoindentation measurement...
Unlike conventional concrete materials, Engineered Cementitious Composites (ECC) use a micromechanic...
Calcareous sand is characterized by low strength, multiporosity, and high-pressure shrinkage. This o...
This paper reports a study to assess nanoindentation mapping of mechanical properties of cement past...
The nanoindentation technique is already widely applied in the mechanical characterization of the mi...
This paper provides in depth novel exploration of the local mechanical properties of nanocomposite c...
The main objective of this review is to study some important nanomaterials and their impact on the p...
Concrete, Bone and Shale have one thing in common: their load-bearing mineral phase is an hydrated n...
AbstractThis paper investigates the effect of nano particles on the mechanical properties at differe...
This paper investigates the effect of nano particles on the mechanical properties at different ages ...
Nanoindentation technique is used to assess the mechanical properties of materials at nano-level. A ...
ABSTRACT: In this paper, micro-mechanical properties of styrene–butadiene rubber (SBR) latex-modifie...
International audienceNano-indentation experiments are carried out on two cement pastes in order to ...
Recent progress in nanoscience and technology makes it possible to assess the mechanical properties ...
Ternary clay-based composite material (TCC), composed of lime, clay and sand, and usually modified w...
This paper aims to present the experimental results involving the use of nanoindentation measurement...
Unlike conventional concrete materials, Engineered Cementitious Composites (ECC) use a micromechanic...
Calcareous sand is characterized by low strength, multiporosity, and high-pressure shrinkage. This o...
This paper reports a study to assess nanoindentation mapping of mechanical properties of cement past...
The nanoindentation technique is already widely applied in the mechanical characterization of the mi...
This paper provides in depth novel exploration of the local mechanical properties of nanocomposite c...
The main objective of this review is to study some important nanomaterials and their impact on the p...
Concrete, Bone and Shale have one thing in common: their load-bearing mineral phase is an hydrated n...
AbstractThis paper investigates the effect of nano particles on the mechanical properties at differe...
This paper investigates the effect of nano particles on the mechanical properties at different ages ...
Nanoindentation technique is used to assess the mechanical properties of materials at nano-level. A ...
ABSTRACT: In this paper, micro-mechanical properties of styrene–butadiene rubber (SBR) latex-modifie...
International audienceNano-indentation experiments are carried out on two cement pastes in order to ...
Recent progress in nanoscience and technology makes it possible to assess the mechanical properties ...