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Understanding the mechanical behavior of solids and contacts
(interfaces and joints) is vital for the analysis, design, and
maintenance of engineering systems. Materials may simultaneously
experience the effects of many factors such as elastic, plastic,
and creep strains, different loading (stress) paths, volume change
under shear stress, microcracking leading to fracture and failure,
strain softening or degradation. Typically the available models
account for only one factor at a time, however, the Disturbed State
Concept (DSC) with the Hierarchical Single Surface (HISS)
plasticity is a unified modelling approach that can allow for
numerous factors simultaneously, and in an integrated manner.
DSC/HISS Modeling Applications for Problems in Mechanics,
Geomechanics, and Structural Mechanics provides readers with
comprehensive information including the basic concepts and
applications for the Disturbed State Concept (DSC)/ HISS modeling
regarding a wide range of engineering materials and contacts.
Uniformity in format and content of each chapter will make it
easier for the reader to appreciate the potential of using the
DSC/HISS modeling across various applications. Features: Presents a
new and simplified way to learn characterizations and behaviors of
materials and contacts under various conditions Offers modeling
applicable to several different materials including geologic
(clays, sands, rocks), modified geologic materials (structured
soils, overconsolidated soils, expansive soils, loess, frozen
soils, chemically treated soils), hydrate bearing sediments, and
more
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