DocumentCode
3418048
Title
A damage model with subsection curve of concrete and its numerical verification based on ABAQUS
Author
Xue, Zhicheng ; Yang, Zengjie ; Zengjie Yang
Author_Institution
Sch. of Archit. & Civil Eng., Heilongjiang Sci. & Technol. Inst., Harbin, China
Volume
5
fYear
2010
fDate
25-27 June 2010
Abstract
Using the energy equivalent hypothesis, combining the tension and compression constitutive relation of concrete material in the code for design of concrete structure, the scalar form of damage variable is introduced and a new concrete damage model is proposed so as to use for damage analysis in concrete structures. In order to the unilateral incision concrete beams with a four-point shear loading, for example, this model is developed for structural damage analysis in the ABAQUS finite element software. And the damage is found on the right of upper incision. The damage max value is 0.9162. The damage zone prolongates downward along a curve form. The results show that the model damage evolution results accord the tendency of digital speckle test results. It means that the damage model for concrete structural damage analysis is feasible.
Keywords
beams (structures); building standards; compressive strength; condition monitoring; design engineering; failure analysis; finite element analysis; shear strength; structural engineering; tensile strength; ABAQUS finite element software; compression; concrete damage model; concrete material subsection curve; concrete structures; design code; energy equivalent hypothesis; four-point shear loading; structural damage analysis; tension; unilateral incision concrete beams; Aerospace materials; Capacitive sensors; Civil engineering; Computer architecture; Concrete; Electronic mail; Equations; Plastics; Stress; Testing; damage constitutive model; energy equivalent hypothesis; numerical verification;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Design and Applications (ICCDA), 2010 International Conference on
Conference_Location
Qinhuangdao
Print_ISBN
978-1-4244-7164-5
Electronic_ISBN
978-1-4244-7164-5
Type
conf
DOI
10.1109/ICCDA.2010.5540842
Filename
5540842
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