In situ neutron diffraction and synchrotron X-ray diffraction, combined with image correlation analysis of 2D optical and 3D X-ray tomography datasets, have been used to investigate the relationship between elastic lattice strain and total strain during deformation of Gilsocarbon (IM1-24) polygranular nuclear grade graphite. The specimens were flat-end Brazilian discs under diametral loading, such that a compressive-tensile biaxial stress state was developed in the central region. The X-ray study was at ambient temperature, and the neutron diffraction was conducted at temperatures from ambient to 850 °C. When under compression, there is a temperature-insensitive linear relationship between the total strain and the lattice strain that is mea...
In-situ measurements using the non-destructive penetration of neutrons are commonplace at neutron so...
Physical mechanisms at different length scales have to be taken into account while predicting the ov...
The power reactor with high-temperature gas-cooled reactor (HTGR) technology uses uranium as the rea...
In situ neutron diffraction and synchrotron X-ray diffraction, combined with image correlation analy...
High temperature in situ tests of Gilsocarbon polygranular nuclear graphite have investigated the mi...
Neutron diffraction and synchrotron X-ray diffraction and imaging have been applied to study, in sit...
AbstractNeutron diffraction and synchrotron X-ray diffraction and imaging have been applied to study...
Cracking from stress concentrations of the graphite neutron moderator, or keyway root cracking, is a...
Nuclear-grade graphite is a critically important high-temperature structural material for current an...
Nuclear-grade graphite is a critically important high-temperature structural material for current an...
AbstractWe simulate the Wigner Effect of the nuclear-grade graphite for the High Temperature Gas-coo...
Fracture tests of graphite are known to exhibit sensitivity to stress state, such as a difference be...
The strain field of a crack in polygranular isotropic nuclear graphite, a quasi-brittle material, ha...
This paper reports experimental observations that show non-irradiated Gilsocarbon polygranular nucle...
Digital volume correlation of in situ synchrotron X-ray computed tomographs has been used to measure...
In-situ measurements using the non-destructive penetration of neutrons are commonplace at neutron so...
Physical mechanisms at different length scales have to be taken into account while predicting the ov...
The power reactor with high-temperature gas-cooled reactor (HTGR) technology uses uranium as the rea...
In situ neutron diffraction and synchrotron X-ray diffraction, combined with image correlation analy...
High temperature in situ tests of Gilsocarbon polygranular nuclear graphite have investigated the mi...
Neutron diffraction and synchrotron X-ray diffraction and imaging have been applied to study, in sit...
AbstractNeutron diffraction and synchrotron X-ray diffraction and imaging have been applied to study...
Cracking from stress concentrations of the graphite neutron moderator, or keyway root cracking, is a...
Nuclear-grade graphite is a critically important high-temperature structural material for current an...
Nuclear-grade graphite is a critically important high-temperature structural material for current an...
AbstractWe simulate the Wigner Effect of the nuclear-grade graphite for the High Temperature Gas-coo...
Fracture tests of graphite are known to exhibit sensitivity to stress state, such as a difference be...
The strain field of a crack in polygranular isotropic nuclear graphite, a quasi-brittle material, ha...
This paper reports experimental observations that show non-irradiated Gilsocarbon polygranular nucle...
Digital volume correlation of in situ synchrotron X-ray computed tomographs has been used to measure...
In-situ measurements using the non-destructive penetration of neutrons are commonplace at neutron so...
Physical mechanisms at different length scales have to be taken into account while predicting the ov...
The power reactor with high-temperature gas-cooled reactor (HTGR) technology uses uranium as the rea...