When subjected to a sustained load, jammed colloidal gels can feature some delayed viscoplastic creep deformations. However, due to the long timescale of creep (up to several years), its modeling and, thereby, prediction has remained challenging. Here, based on mesoscale simulations of calcium–silicate–hydrate gels (C–S–H, the binding phase of concrete), we present an accelerated simulation method—based on stress perturbations and overaging—to model creep deformations in C–S–H. Our simulations yield a very good agreement with nanoindentation creep tests, which suggests that concrete creep occurs through the reorganization of C–S–H grains at the mesoscale. We show that the creep of C–S–H exhibits a logarithmic dependence on time—in agreement...
Both clays and calcium silicate hydrates(the main hydration products of Portland cements) exhibit a ...
Bažant's microprestress theory relates the logarithmic basic creep of concrete to power-law relaxati...
International audienceIn this manuscript, we propose an exhaustion model and an adapted work-hardeni...
When subjected to a sustained load, jammed colloidal gels can feature some delayed viscoplastic cree...
Understanding the physical origin of creep in calcium–silicate–hydrate (C–S–H) is of primary importa...
From soft polymeric gels to hardened cement paste, amorphous solids under constant load exhibit a pr...
Concrete, the solid that forms at room temperature from mixing Portland cement with water, sand, and...
Understanding the physical origin of creep in calcium-silicate-hydrate (C-S-H) is of primary importa...
The logarithmic deviatoric creep of cement paste is a technical and scientific challenge. Transition...
The logarithmic deviatoric creep of cement paste is a technical and scientific challenge. Transition...
Calcium-silicate-hydrate (C-S-H) exhibits a viscous effect, which significantly affects long-term de...
Long-term shrinkage and creep of concrete can impact the lifetime of concrete structures. Basic cree...
The time-dependent response of structural materials dominates our aging infrastructure's life expect...
Gels of calcium–silicate–hydrates (C–S–H) are the glue that is largely responsible for the mechanica...
Both clays and calcium silicate hydrates(the main hydration products of Portland cements) exhibit a ...
Bažant's microprestress theory relates the logarithmic basic creep of concrete to power-law relaxati...
International audienceIn this manuscript, we propose an exhaustion model and an adapted work-hardeni...
When subjected to a sustained load, jammed colloidal gels can feature some delayed viscoplastic cree...
Understanding the physical origin of creep in calcium–silicate–hydrate (C–S–H) is of primary importa...
From soft polymeric gels to hardened cement paste, amorphous solids under constant load exhibit a pr...
Concrete, the solid that forms at room temperature from mixing Portland cement with water, sand, and...
Understanding the physical origin of creep in calcium-silicate-hydrate (C-S-H) is of primary importa...
The logarithmic deviatoric creep of cement paste is a technical and scientific challenge. Transition...
The logarithmic deviatoric creep of cement paste is a technical and scientific challenge. Transition...
Calcium-silicate-hydrate (C-S-H) exhibits a viscous effect, which significantly affects long-term de...
Long-term shrinkage and creep of concrete can impact the lifetime of concrete structures. Basic cree...
The time-dependent response of structural materials dominates our aging infrastructure's life expect...
Gels of calcium–silicate–hydrates (C–S–H) are the glue that is largely responsible for the mechanica...
Both clays and calcium silicate hydrates(the main hydration products of Portland cements) exhibit a ...
Bažant's microprestress theory relates the logarithmic basic creep of concrete to power-law relaxati...
International audienceIn this manuscript, we propose an exhaustion model and an adapted work-hardeni...