Enhancement of Ultrahigh Performance Concrete Material Properties with Carbon Nanofiber

Author:

Ahmed Sbia Libya1,Peyvandi Amirpasha2,Soroushian Parviz1,Lu Jue3,Balachandra Anagi M.3

Affiliation:

1. Department of Civil and Environmental Engineering, Michigan State University, 3546 Engineering Building, East Lansing, MI 48824-1226, USA

2. Bridge Engineering Department, HNTB Corporation, 10000 Perkins Rowe, Suite No. 640, Baton Rouge, LA 70810, USA

3. Metna Co., 1926 Turner Street, Lansing, MI 48906, USA

Abstract

Ultrahigh performance concrete (UHPC) realized distinctly high mechanical, impermeability, and durability characteristics by reducing the size and content of capillary pore, refining the microstructure of cement hydrates, and effectively using fiber reinforcement. The dense and fine microstructure of UHPC favor its potential to effectively disperse and interact with nanomaterials, which could complement the reinforcing action of fibers in UHPC. An optimization experimental program was implemented in order to identify the optimum combination of steel fiber and relatively low-cost carbon nanofiber in UHPC. The optimum volume fractions of steel fiber and carbon nanofiber identified for balanced improvement of flexural strength, ductility, energy sorption capacity, impact, and abrasion resistance of UHPC were 1.1% and 0.04%, respectively. Desired complementary/synergistic actions of nanofibers and steel fibers in UHPC were detected, which were attributed to their reinforcing effects at different scales, and the potential benefits of nanofibers to interfacial bonding and pull-out behavior of fibers in UHPC. Modification techniques which enhanced the hydrophilicity and bonding potential of nanofibers to cement hydrates benefited their reinforcement efficiency in UHPC.

Funder

National Science Foundation

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

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