Alkali-Silica Reaction and Its Effects on the Splitting Tensile Strength and Direct Compressive Strength of Mortar Bars

Author:

Pachel Caleb E. C.1,Tanner Jennifer Eisenhauer2

Affiliation:

1. Martin/Martin Wyoming, 4020 Laramie St., Cheyenne, WY 82001, USA, https://orcid.org/0000-0003-4151-1993

2. Department of Civil and Architectural Engineering, University of Wyoming, Dept. 3295, 1000 E. University Ave., Laramie, WY 82071-3295, USA (Corresponding author), e-mail: tannerj@uwyo.edu, https://orcid.org/0000-0003-2433-2897

Publisher

ASTM International

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference31 articles.

1. Alkali-Silica Reaction in Concrete: Mechanisms, Mitigation and Test Methods;Figueira;Construction and Building Materials,2019

2. P. K. Mehta and P. J. M. Monteiro, Concrete: Microstructure, Properties, and Materials, 4th ed. (New York: McGraw-Hill Education, 2014).

3. The ASR Mechanism of Reactive Aggregates in Concrete and Its Mitigation by Fly Ash: A Critical Review;Saha;Construction and Building Materials,2018

4. Expansion of Concrete through Reaction between Cement and Aggregate;Stanton;Proceedings of the American Society of Civil Engineers,1942

5. M. D. A. Thomas, B. Fourmier, and K. J. Folliard, Alkali-Aggregate Reactivity (AAR) Facts Book, FHWA-HIF-13-019 (Washington, DC: Federal Highway Administration, 2013).

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