A. Ahıskalı Et Al. , "Mechanical and durability properties of polymer fiber reinforced one-part foam geopolymer concrete: A sustainable strategy for the recycling of waste steel slag aggregate and fly ash," Construction and Building Materials , vol.440, 2024
Ahıskalı, A. Et Al. 2024. Mechanical and durability properties of polymer fiber reinforced one-part foam geopolymer concrete: A sustainable strategy for the recycling of waste steel slag aggregate and fly ash. Construction and Building Materials , vol.440 .
Ahıskalı, A., Ahıskalı, M., Bayraktar, O. Y., KAPLAN, G., & Assaad, J., (2024). Mechanical and durability properties of polymer fiber reinforced one-part foam geopolymer concrete: A sustainable strategy for the recycling of waste steel slag aggregate and fly ash. Construction and Building Materials , vol.440.
Ahıskalı, Adem Et Al. "Mechanical and durability properties of polymer fiber reinforced one-part foam geopolymer concrete: A sustainable strategy for the recycling of waste steel slag aggregate and fly ash," Construction and Building Materials , vol.440, 2024
Ahıskalı, Adem Et Al. "Mechanical and durability properties of polymer fiber reinforced one-part foam geopolymer concrete: A sustainable strategy for the recycling of waste steel slag aggregate and fly ash." Construction and Building Materials , vol.440, 2024
Ahıskalı, A. Et Al. (2024) . "Mechanical and durability properties of polymer fiber reinforced one-part foam geopolymer concrete: A sustainable strategy for the recycling of waste steel slag aggregate and fly ash." Construction and Building Materials , vol.440.
@article{article, author={Adem Ahıskalı Et Al. }, title={Mechanical and durability properties of polymer fiber reinforced one-part foam geopolymer concrete: A sustainable strategy for the recycling of waste steel slag aggregate and fly ash}, journal={Construction and Building Materials}, year=2024}