Weak non-linearities of amorphous polymer under creep in the vicinity of the glass transition
arXiv:2412.08664
Abstract
The creep behavior of an amorphous poly(etherimide) (PEI) polymer is investigated in the vicinity of its glass transition in a weakly non linear regime where the acceleration of the creep response is driven by local configurational rearrangements. From the time shifts of the creep compliance curves under stresses from 1 to 15~\si{\mega\pascal} and in the temperature range between and , where is the glass transition, we determine a macroscopic acceleration factor. The macroscopic acceleration is shown to vary as with , where is the macroscopic stress and is a decreasing function of compliance. Because at the beginning of creep, the stress is homogeneous, the macroscopic acceleration is thus similar to the local one, in agreement with the recent theory of Long \textit{et al.} (\textit{Phys. Rev. Mat.} (2018) \textbf{2}, 105601 ) which predicts . For larger compliances, the decrease of the of is interpreted as a signature of the development of stress disorder during creep.
arXiv admin note: substantial text overlap with arXiv:2403.00355