E3S Web of Conferences (Jan 2018)

Damage Model of Reinforced Concrete Members under Cyclic Loading

  • Wei Bo Chen,
  • Zhang Jing Shu,
  • Zhang Yin Hua,
  • Zhou Jia Lai

DOI
https://doi.org/10.1051/e3sconf/20183803057
Journal volume & issue
Vol. 38
p. 03057

Abstract

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Based on the Kumar damage model, a new damage model for reinforced concrete members is established in this paper. According to the damage characteristics of reinforced concrete members subjected to cyclic loading, four judgment conditions for determining the rationality of damage models are put forward. An ideal damage index (D) is supposed to vary within a scale of zero (no damage) to one (collapse). D should be a monotone increasing function which tends to increase in the case of the same displacement amplitude. As for members under large displacement amplitude loading, the growth rate of D should be greater than that of D under small amplitude displacement loading. Subsequently, the Park-Ang damage model, the Niu-Ren damage model, the Lu-Wang damage model and the proposed damage model are analyzed for 30 experimental reinforced concrete members, including slabs, walls, beams and columns. The results show that current damage models do not fully matches the reasonable judgment conditions, but the proposed damage model does. Therefore, a conclusion can be drawn that the proposed damage model can be used for evaluating and predicting damage performance of RC members under cyclic loading.