Mechanical and dual-axis flexural behaviour of hybrid plastic waste and fly ash unsaturated polyester polymer mortar

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Akhmad Suryadi, Taufiq Rochman, Muhammad Haqqi Musthafa Kamil

2026 Cleaner Waste Systems Vol. 14 Article Cited by 0 SDG 12 Quartile

Abstract

The incorporation of cement in mortar compositions exacerbates environmental degradation via CO2 emissions. A key initiative to curtail cement usage involves substituting hydraulic cement binders with polymeric alternatives, enhancing sustainability in material testing. This research first aimed to determine the optimal composition in terms of compressive strength, density, tensile strength, and flexural strength. In this investigation, the optimal formulation emerged in RUN-16, comprising unsaturated polyester at 37%, plastic waste at 20%, fly ash at 38%, cobalt at 1.5%, and MEKP at 3.5%. This composition delivers compressive strength of 84.03 MPa, tensile strength of 10.96 MPa, flexural strength of 11.30 MPa, and specific gravity of 1427 kg/m³ , as validated through rigorous mechanical testing protocols. © 2026 The Authors.

Affiliations

Department of Civil Engineering, State Polytechnic of Malang, Malang, Indonesia

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