Probabilistic analysis models to determine capsule dosage for healing of cracks in concrete

Author:

Wang Miaomiao1ORCID,Hu Xiangming12,Zhao Yanyun1

Affiliation:

1. Key Laboratory of Mine Disaster Prevention and Control, College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao, China

2. Urban and Environmental Science, Binzhou University, Binzhou, China

Abstract

In order to analyze the optimal dosage of capsule pre-embedded in concrete materials, this article simplified the irregular cracks generated in concrete materials into linear regular hexagonal cracks in two-dimensional plane and planar cracks in three-dimensional space. Then, the probability model describing the interaction between the cracks and capsules was established using the probability theory of integral geometry. The theoretical solutions for the required capsule dosage for the two- and three-dimensional cases were derived. Finally, the calculated results for the theoretical model were compared with those provided by the computer simulation software. The results indicated that the model is suitable for analyzing and optimizing the capsule dosage required to repair cracks in concrete materials. It can provide a theoretical basis for the design of self-healing materials.

Funder

shandong university of science and technology

national key research and development program of china stem cell and translational research

Shandong Province First Class Subject Funding Project

natural science foundation of shandong province

national natural science foundation of china

department of science and technology of shandong province

Taishan scholars project special funding

Publisher

SAGE Publications

Subject

Building and Construction,Civil and Structural Engineering

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