Sulapha Peethamparan, Ph.D.
Affiliations: | 2006 | Civil Engineering | Purdue University, West Lafayette, IN, United States |
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Kumarappa DB, Peethamparan S. (2020) Stress-strain characteristics and brittleness index of alkali-activated slag/class C fly ash mortars Journal of Building Engineering. 101595 |
Ariyachandra E, Peethamparan S, Patel S, et al. (2020) Effect of NO2 sequestered recycled concrete aggregate (NRCA) on mechanical and durability performance of concrete Cement and Concrete Research. 137: 106210 |
Hilton B, Bawden K, Winnebeck K, et al. (2019) The functional and environmental performance of mixed cathode ray tubes and recycled glass as partial replacement for cement in concrete Resources Conservation and Recycling. 151: 104451 |
Chandrasiri C, Yehdego T, Peethamparan S. (2019) Synthesis and characterization of bio-cement from conch shell waste Construction and Building Materials. 212: 775-786 |
Li Z, Thomas RJ, Peethamparan S. (2019) Alkali-silica reactivity of alkali-activated concrete subjected to ASTM C 1293 and 1567 alkali-silica reactivity tests Cement and Concrete Research. 123: 105796 |
Thomas RJ, Ariyachandra E, Lezama D, et al. (2018) Comparison of chloride permeability methods for Alkali-Activated concrete Construction and Building Materials. 165: 104-111 |
Kumarappa DB, Peethamparan S, Ngami M. (2018) Autogenous shrinkage of alkali activated slag mortars: Basic mechanisms and mitigation methods Cement and Concrete Research. 109: 1-9 |
Thomas RJ, Gebregziabiher BS, Giffin A, et al. (2018) Micromechanical properties of alkali-activated slag cement binders Cement & Concrete Composites. 90: 241-256 |
Thomas RJ, Peethamparan S. (2017) Effect of Specimen Size and Curing Condition on the Compressive Strength of Alkali-Activated Concrete Transportation Research Record. 2629: 9-14 |
Thomas RJ, Peethamparan S. (2017) Stepwise regression modeling for compressive strength of alkali-activated concrete Construction and Building Materials. 141: 315-324 |