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Cellular Automata Simulations of Random Pitting Process on Steel Reinforcement Surface

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摘要 The corrosion of reinforcement in the concrete will cause the effective cross-sectional area of reinforcement to be weakened and the performance of reinforcement to change and lead to the degradation of the bond behavior between reinforcement and concrete,which can seriously affect the mechanical properties of the structural elements.Therefore,it is of great practical significance to accurately simulate the corrosion morphology and the corrosion products of reinforcement.This paper improves the previous cellular automata models and establishes a new cellular automata model framework for simulating the random pitting corrosion process of reinforcement in concrete.This model defines the detailed local evolution laws of material transformation,penetration and diffusion processes during the corrosion.Meanwhile,based on the spatial inhomogeneity of corrosion,three parameters are introduced into the model:The dissolution probability parameter p,the local corrosion space parameterλand the local corrosion probability parameterε,which establishes a parameterized model of corrosion probability.The research results show that the common steel reinforcement corrosion morphology can be obtained by adjusting the parameters.The volume expansion rate of the corrosion products is about 2,which is consistent with the relevant experimental research results.The cellular automata model in this paper can simulate the common steel reinforcement corrosion morphology and corrosion products in engineering.
出处 《Computer Modeling in Engineering & Sciences》 SCIE EI 2021年第9期967-983,共17页 工程与科学中的计算机建模(英文)
基金 The works described in this paper are substantially supported by the grant from National Natural Science Foundation of China(Grant No.51678135) Natural Science Foundation of Jiangsu Province(No.BK20171350) Six Talent Peak Projects in Jiangsu Province(JNHB-007),which are gratefully acknowledged.
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