ACI PRC-544.9-17: Report on Measuring Mechanical Properties of Hardened Fiber-Reinforced Concrete

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Description

This report provides a synopsis of the existing testing methodologies for the determination of mechanical properties of hardened fiber-reinforced concrete (FRC). This report applies to the mechanical properties of conventionally mixed and placed FRC, including fiber-reinforced self-consolidating concrete (FRSCC), or fiber-reinforced shotcrete (FRS) using steel, glass, polymeric, and natural fibers.

The objective is to enable manufacturers to characterize the mechanical properties of hardened FRC and encourage researchers and testing laboratories to adopt common and unified test methods to build a meaningful database of mechanical properties of hardened FRC materials and products. Test results from the test procedures used in this report are not intended for the design of FRC structures, but to gain a better understanding of factors influencing the determination of their mechanical properties and of FRCs and FRC products.

Keywords: compressive strength; fiber pullout; fiber-reinforced concrete; flexural fatigue resistance; flexural strength; impact resistance; multiaxial behavior; shear and torsion; tensile strength; toughness.

 

Document Details

Author: ACI Committee 544

Publication Year: 2017

ISBN: 9781945487491

Categories: Fiber-Reinforced Concrete

Formats: PDF, ePub, or Kindle

Table of Contents

CHAPTER 1—INTRODUCTION AND SCOPE

1.1—Introduction

1.2—Scope

CHAPTER 2—NOTATION AND DEFINITIONS

2.1—Notation

2.2—Definitions

CHAPTER 3—SAMPLING AND SPECIMEN PREPARATION

3.1—General

3.2—Test specimens

3.3—Sample size

CHAPTER 4—COMPRESSIVE STRENGTH, MODULUS OF ELASTICITY, AND POISSON’S RATIO

4.1—General

4.2—Compressive stress-strain curve

CHAPTER 5—TENSILE BEHAVIOR

5.1—General

5.2—Direct tension tests

5.3—Indirect tension tests

CHAPTER 6—FLEXURAL BEHAVIOR: STRENGTH, TOUGHNESS, AND CLOSED-LOOP TESTS

6.1—General

6.2—Flexural strength

6.3—Flexural toughness and residual post-cracking strength

CHAPTER 7—INTERFACE, BOND SLIP, AND FIBER PULLOUT

7.1—General

7.2—Pullout tests

CHAPTER 8—HIGH STRAIN RATE TESTING

8.1—General

8.2—High-speed tension tests

8.3—Split Hopkinson (pressure) bar test

CHAPTER 9—IMPACT PERFORMANCE TESTING

9.1—General

9.2—Noninstrumented impact tests

9.3—Instrumented impact tests

CHAPTER 10—FATIGUE RESISTANCE

10.1—General

10.2—Uniaxial compression fatigue

10.3—Biaxial compression fatigue

10.4—Tensile fatigue

10.5—Flexural fatigue

CHAPTER 11—SHEAR AND TORSION

CHAPTER 12—BIAXIAL/MULTIAXIAL BEHAVIOR

CHAPTER 13—CONCLUSIONS

CHAPTER 14—REFERENCES

ERRATA INFO

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