Characterization of lightly stabilized granular base materials using monotonic and cyclic load flexural testing
Author | Paul, Dalim K. |
Author | Gnanendran, Carthigesu T. |
Available date | 2021-09-05T05:40:21Z |
Publication Date | 2016 |
Publication Name | Journal of Materials in Civil Engineering |
Resource | Scopus |
ISSN | 8991561 |
Abstract | Lightly cementitiously stabilized granular materials are generally characterized by their tensile properties and this paper examines the use of monotonic and cyclic load flexural testing to determine the tensile characteristics of these materials. The research reported in this paper included the determination of modulus of rupture as well as static and dynamic stiffness moduli from monotonic and cyclic load flexural testing for two typical freshly quarried granular base materials stabilized by the addition of 1-3% cement-fly ash slow-setting binder. A flexural testing setup with improved deformation measurement was developed and the tests were conducted on 28-day cured samples prepared by static compaction. Details of improved flexural testing arrangement with on-sample midspan deflection measurement for performing monotonic and cyclic load testing to obtain reliable data are also discussed. The research reported in this paper indicates that cyclic load flexural testing could be used reliably for determining the dynamic stiffness modulus of a lightly stabilized granular material. Correlations among the mechanical properties obtained from flexural testing are also presented. 2015 American Society of Civil Engineers. |
Language | en |
Publisher | American Society of Civil Engineers (ASCE) |
Subject | Characterization Cyclic loads Fly ash Granular materials Materials testing Setting Stiffness Tensile testing Deformation measurements Dynamic stiffness modulus Granular base materials Mid-span deflection Modulus of rupture Static and dynamic stiffness Static compaction Tensile characteristics Load testing flexure granular medium loading mechanical property stiffness tensile stress |
Type | Article |
Issue Number | 1 |
Volume Number | 28 |
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Civil and Environmental Engineering [851 items ]