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Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles
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O. Gencel Et Al. , "Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles," Construction and Building Materials , vol.291, 2021

Gencel, O. Et Al. 2021. Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles. Construction and Building Materials , vol.291 .

Gencel, O., Benli, A., Bayraktar, O. Y., KAPLAN, G., SÜTÇÜ, M., & Elabade, W. A. T., (2021). Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles. Construction and Building Materials , vol.291.

Gencel, Osman Et Al. "Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles," Construction and Building Materials , vol.291, 2021

Gencel, Osman Et Al. "Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles." Construction and Building Materials , vol.291, 2021

Gencel, O. Et Al. (2021) . "Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles." Construction and Building Materials , vol.291.

@article{article, author={Osman Gencel Et Al. }, title={Effect of waste marble powder and rice husk ash on the microstructural, physico-mechanical and transport properties of foam concretes exposed to high temperatures and freeze–thaw cycles}, journal={Construction and Building Materials}, year=2021}