The dislocation-based modeling of the high-temperature creep of two-phased single-crystal superalloys requires input data beyond strain vs time curves. This may be obtained by use of in situ experiments combining high-temperature creep tests with high-resolution synchrotron three-crystal diffractometry. Such tests give access to changes in phase volume fractions and to the average components of the stress tensor in each phase as well as the plastic strain of each phase. Further progress may be obtained by a new method making intensive use of the Fast Fourier Transform, and first modeling the behavior of a representative volume of material (stress fields, plastic strain, dislocation densities…), then simulating directly the corresponding dif...
International audienceThree-dimensional discrete dislocation dynamics (DDD) simulations in combinati...
International audienceThree-dimensional discrete dislocation dynamics (DDD) simulations in combinati...
International audienceThe high-temperature mechanical behavior of single-crystal Ni-base superalloys...
The dislocation-based modeling of the high-temperature creep of two-phased single-crystal superalloy...
International audienceThe high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based si...
The combination of in situ high resolution diffraction experiments with synchrotron radiation and me...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
Abstract. The combination of high temperature (1050°C -1150°C) testing and in situ high energy X-Ray...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
Complex thermomechanical loadings at high temperature (T ⩾ 950 °C) on the AM1 single-crystal superal...
International audienceComplex thermomechanical loadings at high temperature (T >= 950 degrees C) on ...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
The high-temperature mechanical behavior of single-crystal Ni-base superalloys has been formerly stu...
The high-temperature mechanical behavior of single-crystal Ni-base superalloys has been formerly stu...
International audienceThree-dimensional discrete dislocation dynamics (DDD) simulations in combinati...
International audienceThree-dimensional discrete dislocation dynamics (DDD) simulations in combinati...
International audienceThe high-temperature mechanical behavior of single-crystal Ni-base superalloys...
The dislocation-based modeling of the high-temperature creep of two-phased single-crystal superalloy...
International audienceThe high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based si...
The combination of in situ high resolution diffraction experiments with synchrotron radiation and me...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
Abstract. The combination of high temperature (1050°C -1150°C) testing and in situ high energy X-Ray...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
Complex thermomechanical loadings at high temperature (T ⩾ 950 °C) on the AM1 single-crystal superal...
International audienceComplex thermomechanical loadings at high temperature (T >= 950 degrees C) on ...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
The high-temperature creep behavior of a rafted [001] oriented AM1 Ni-based single crystal superallo...
The high-temperature mechanical behavior of single-crystal Ni-base superalloys has been formerly stu...
The high-temperature mechanical behavior of single-crystal Ni-base superalloys has been formerly stu...
International audienceThree-dimensional discrete dislocation dynamics (DDD) simulations in combinati...
International audienceThree-dimensional discrete dislocation dynamics (DDD) simulations in combinati...
International audienceThe high-temperature mechanical behavior of single-crystal Ni-base superalloys...