Atıf Formatları
Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

N. Ç. Demiral Et Al. , "Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars," Cement and Concrete Composites , vol.134, 2022

Demiral, N. Ç. Et Al. 2022. Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars. Cement and Concrete Composites , vol.134 .

Demiral, N. Ç., YEMİŞCİ ÖZKAN, M., ŞAHİN, O., İLCAN, H., KUL, A., YILDIRIM, G., ... ŞAHMARAN, M.(2022). Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars. Cement and Concrete Composites , vol.134.

Demiral, NAZIM Et Al. "Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars," Cement and Concrete Composites , vol.134, 2022

Demiral, NAZIM Ç. Et Al. "Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars." Cement and Concrete Composites , vol.134, 2022

Demiral, N. Ç. Et Al. (2022) . "Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars." Cement and Concrete Composites , vol.134.

@article{article, author={NAZIM ÇAĞATAY DEMİRAL Et Al. }, title={Mechanical anisotropy evaluation and bonding properties of 3D-printable construction and demolition waste-based geopolymer mortars}, journal={Cement and Concrete Composites}, year=2022}