Mechanical properties and discrete element simulation of KH-560 modified polystyrene concrete

Author:

Feng Yong12,Li Xiaoyang1ORCID,Wang Weijian1,Li Lijuan1,Zhao Chen3

Affiliation:

1. Henan University of Technology, Zhengzhou, China

2. Henan International Joint Laboratory of Modern Green Ecological Storage System, Zhengzhou, China

3. Henan Vocational College of Water Conservancy and Environment, Zhengzhou, China

Abstract

Polystyrene foam (EPS) concrete is a composite concrete material commonly used in construction, which has excellent thermal insulation and thermal insulation properties, but also has defects of weak bonding interface.KH-560 can significantly improve the characteristics of EPS particles and concrete matrix, which have different physical and chemical properties and are difficult to combine. In this study, the effects of different levels of KH-560 on the enhanced mechanical properties of EPS concrete were studied from the aspects of macroscopic mechanical properties, microstructure characteristics, chemical composition and discrete element simulation, and the mechanism of action was discussed. The results of mechanical experiments show that the compressive strength and flexural strength of EPS concrete mixed with KH-560 are higher than those of ordinary EPS concrete, and its mechanical properties gradually increase with the increase of KH-560 content. XRD, FT-IR and SEM observations showed that more C-S-H gels would be produced under the action of KH-560, which made the structure of the weak interface transition zone of EPS concrete more compact. The results of discrete element simulation show that the peak strength of EPS concrete increases with the increase of friction coefficient, but has little effect on its elastic modulus.

Funder

Zhengzhou Collaborative Innovation Project

Henan Provincial Science and Technology Research Project

Innovative Funds Plan of Henan University of Technology

Publisher

SAGE Publications

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