Effectiveness of Surface Treatment on Rubber Particles Towards Compressive Strength of Rubber Concrete: A Numerical Study on Rubber-Cement Interface

19 Pages Posted: 11 Apr 2022

See all articles by Juntao Kang

Juntao Kang

Wuhan University of Technology

Yanshuo Liu

Wuhan University of Technology

Jiale Yuan

Wuhan University of Technology

Chunpeng Chen

Wuhan University of Technology

Lei Wang

Wuhan University of Technology

Zechuan YU

Wuhan University of Technology

Abstract

Waste rubber can be added to concrete for recycling if the addition does not reduce mechanical properties of the concrete significantly.  The reduction in mechanical properties of rubber concrete can be alleviated via surface treatment of the added rubber particles, which modifies the interface between cement and rubber particles.  Effectiveness of the modification for compressive strength of rubber concrete is evaluated through experiments, peridynamics and molecular dynamics studies.  Upper bound of the positive effect of the surface treatment for compressive strength is predicted, which can be achieved by using silane coupling agents.  On top of the surface treatment, novel modification methods for rubber concrete like improvement of mechanical properties of rubber particles and of casting method are envisioned.

Keywords: rubber concrete, Molecular dynamics, C-S-H, Silane coupling agent, Peridynamics

Suggested Citation

Kang, Juntao and Liu, Yanshuo and Yuan, Jiale and Chen, Chunpeng and Wang, Lei and YU, Zechuan, Effectiveness of Surface Treatment on Rubber Particles Towards Compressive Strength of Rubber Concrete: A Numerical Study on Rubber-Cement Interface. Available at SSRN: https://ssrn.com/abstract=4081158 or http://dx.doi.org/10.2139/ssrn.4081158

Juntao Kang

Wuhan University of Technology ( email )

Wuhan
China

Yanshuo Liu

Wuhan University of Technology ( email )

Wuhan
China

Jiale Yuan

Wuhan University of Technology ( email )

Wuhan
China

Chunpeng Chen

Wuhan University of Technology ( email )

Wuhan
China

Lei Wang

Wuhan University of Technology ( email )

Wuhan
China

Zechuan YU (Contact Author)

Wuhan University of Technology ( email )

Wuhan
China

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