A. Eser Et Al. , "Multiscale modeling of tempering of AISI H13 hot-work tool steel - Part 1: Prediction of microstructure evolution and coupling with mechanical properties," COMPUTATIONAL MATERIALS SCIENCE , vol.113, pp.280-291, 2016
Eser, A. Et Al. 2016. Multiscale modeling of tempering of AISI H13 hot-work tool steel - Part 1: Prediction of microstructure evolution and coupling with mechanical properties. COMPUTATIONAL MATERIALS SCIENCE , vol.113 , 280-291.
Eser, A., Broeckmann, C., & Simsir, C., (2016). Multiscale modeling of tempering of AISI H13 hot-work tool steel - Part 1: Prediction of microstructure evolution and coupling with mechanical properties. COMPUTATIONAL MATERIALS SCIENCE , vol.113, 280-291.
Eser, A., C. Broeckmann, And CANER ŞİMŞİR. "Multiscale modeling of tempering of AISI H13 hot-work tool steel - Part 1: Prediction of microstructure evolution and coupling with mechanical properties," COMPUTATIONAL MATERIALS SCIENCE , vol.113, 280-291, 2016
Eser, A. Et Al. "Multiscale modeling of tempering of AISI H13 hot-work tool steel - Part 1: Prediction of microstructure evolution and coupling with mechanical properties." COMPUTATIONAL MATERIALS SCIENCE , vol.113, pp.280-291, 2016
Eser, A. Broeckmann, C. And Simsir, C. (2016) . "Multiscale modeling of tempering of AISI H13 hot-work tool steel - Part 1: Prediction of microstructure evolution and coupling with mechanical properties." COMPUTATIONAL MATERIALS SCIENCE , vol.113, pp.280-291.
@article{article, author={A. Eser Et Al. }, title={Multiscale modeling of tempering of AISI H13 hot-work tool steel - Part 1: Prediction of microstructure evolution and coupling with mechanical properties}, journal={COMPUTATIONAL MATERIALS SCIENCE}, year=2016, pages={280-291} }