Technical Papers
May 16, 2023

Comparing Strength and Modulus of Elasticity Values for Prisms Constructed with Lightweight and Normal Weight Grout

Publication: Journal of Materials in Civil Engineering
Volume 35, Issue 8

Abstract

Current masonry design standards allow for the use of lightweight concrete masonry unit (CMUs), but lightweight grout is not an approved building material. An experimental test program was conducted to compare the compressive strength and modulus of elasticity of masonry prisms constructed with lightweight and normal weight grout. Three strength categories were considered: 13,780, 20,670, and 27,560 kPa (2,000, 3,000, and 4,000 psi). The experimental results indicated that at prism compressive strengths near 13,780 kPa (2,000 psi), there was no statistical strength difference between prisms made with lightweight and normal weight grout. As a result, the authors suggest that for compressive strengths near 13,780 kPa (2,000 psi), lightweight grout should be a code-acceptable alternative to normal weight grout. At higher prism compressive strengths, the values obtained for lightweight and normal weight materials diverged, and the lightweight prisms could not sustain the same loads and stresses as those made with normal weight grout. The results suggest that the difference in strength between lightweight and normal weight prisms can be accounted for by applying a lightweight reduction factor to the data set.

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Data Availability Statement

Some or all data, models, or code that support the findings of this study are available from the corresponding author upon reasonable request.

References

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Information & Authors

Information

Published In

Go to Journal of Materials in Civil Engineering
Journal of Materials in Civil Engineering
Volume 35Issue 8August 2023

History

Received: Jun 4, 2022
Accepted: Nov 21, 2022
Published online: May 16, 2023
Published in print: Aug 1, 2023
Discussion open until: Oct 16, 2023

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Authors

Affiliations

Professor, Dept. of Civil and Environmental Engineering, Tennessee Technological Univ., P.O. Box 5015, Cookeville, TN 38505 (corresponding author). ORCID: https://orcid.org/0000-0002-2563-0960. Email: [email protected]
Ben Mohr, Ph.D., M.ASCE [email protected]
P.E.
Associate Professor, Dept. of Civil and Environmental Engineering, Tennessee Technological Univ., P.O. Box 5015, Cookeville, TN 38505. Email: [email protected]
Richard Bennett, Ph.D., M.ASCE [email protected]
P.E.
Professor, Dept. of Civil and Environmental Engineering, Univ. of Tennessee Knoxville, Knoxville, TN 37996. Email: [email protected]
Daniel Rikli [email protected]
Engineer Intern, Alfred Benesch & Company, 401 Church St., Suite 1600, Nashville, TN 37219. Email: [email protected]
Jason Thompson [email protected]
Vice President of Engineering, National Concrete Masonry Association, 13750 Sunrise Valley Dr., Herndon, VA 20171. Email: [email protected]

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