Upscaling and spatial localization of non-local energies with applications to crystal plasticity
arXiv:1907.02955
Abstract
We describe multiscale geometrical changes via structured deformations and the non-local energetic response at a point via a function of the weighted averages of the jumps of microlevel deformations at points within a distance of . The deformations are chosen so that and . We provide conditions on under which the upscaling "" results in a macroscale energy that depends through on (1) the jumps of and the "disarrangment field" , (2) the "horizon" , and (3) the weighting function for microlevel averaging of . We also study the upscaling "" followed by spatial localization "" and show that this succession of processes results in a purely local macroscale energy that depends through upon the jumps of and the "disarrangment field" , alone. In special settings, such macroscale energies have been shown to support the phenomena of yielding and hysteresis, and our results provide a broader setting for studying such yielding and hysteresis. As an illustration, we apply our results in the context of the plasticity of single crystals.
31 pages