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VERSION:2.0
PRODID:-//UIC
BEGIN:VEVENT
UID:2026081004080820170516T11000020170516T1200006a79f76884501@uic.edu
CATEGORIES:MEETING
STATUS:TENTATIVE
DTSTAMP:20190614T054259
DTSTART:20170516T110000
DTEND:20170516T120000
SUMMARY:Dr. Thai Minh Quan
DESCRIPTION:We develop in this study a visco-damage model for concrete materials based on the concept of pseudo-strains introduced by Schapery coupled with the damage model of Mazars. The pseudo-strains approach allows for reformulation of the initial viscoelastic problem as an equivalent elastic one by using a simple correspondence principle. The viscoelastic model results from a homogenization procedure in which the Mori?Tanaka scheme is applied in the Laplace?Carson space for estimating the effective linear viscoelastic bulk and shear moduli of the material. A composite made of a linear viscoelastic matrix described by a generalized Maxwell model and containing distributed spherical elastic inclusions and pores is adopted as a simplified representation of the material under consideration. | Event post: https://cme.uic.edu/events?page_id=1222
LOCATION:1047 ERF   Chicago IL 60607
CLASS:PRIVATE
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