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A Study on Nonlinear Behavior of RC Structure using Different Crack Models  

Kim, Sung-Chil (경기대학교 토목.환경공학부)
Ahn, Young-Ki ((주)쌍용엔지니어링)
Park, Sung-Yong (경기대학교 대학원)
Publication Information
Journal of the Korea institute for structural maintenance and inspection / v.6, no.4, 2002 , pp. 139-146 More about this Journal
Abstract
A analysis of crack behavior in RC member was performed by nonlinear finite element method. Two crack models were used in F.E.M.(finite element method): one was FCM (the fixed crack model) and the other was RCM (the rotated crack model). Based on parametric study, the ratio of shear steel, strength of concrete, and a/d(shear span/effective depth) were compared with test results of references. According to the test results, when the member behavior was affected by the shear or diagonal tension, RCM was reasonable. However, when the behavior was affected by the flexibility, FCM was more appropriate. In addition, each crack model behavior for the change of shear steel ratio, the increase of strain energy was constant in FCM, but it was different in RCM because of diagonal crack distribution and crack width. Since the strength of concrete is affected not only by shear but also by flexural strength, each crack model behavior yields similar results.
Keywords
RC Member; Fixed Crack Model; Rotated Crack Model;
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