This monograph presents
approaches to symbolize inelastic habit of fabrics and constructions at
high temperature. ranging from experimental observations, it discusses basic
features of inelastic phenomena together with creep, plasticity, leisure, low
cycle and thermal fatigue.
The authors formulate constitutive equations to explain the inelastic response
for the given states of tension and microstructure. They introduce evolution
equations to seize hardening, restoration, softening, getting older and harm processes.
Principles of continuum mechanics and thermodynamics are provided to supply a
framework for the modeling fabrics habit with the purpose of structural
analysis of high-temperature engineering components.
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