B. Deliktaş Et Al. , "Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels," In Handbook of Nonlocal Continuum Mechanics for Materials and Structures , Zug: Springer Nature, 2019, pp.1099-1122.
Deliktaş, B. Et Al. Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels. 2019. In Handbook of Nonlocal Continuum Mechanics for Materials and Structures , Springer Nature, Zug, 1099-1122.
Deliktaş, B., Turtuk, I. C., & Voyiadjis, G. Z., (2019). Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels. Handbook of Nonlocal Continuum Mechanics for Materials and Structures (pp.1099-1122), Zug: Springer Nature.
Deliktaş, BABÜR, Ismail Cem Turtuk, And George Z. Voyiadjis. "Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels." In Handbook of Nonlocal Continuum Mechanics for Materials and Structures , 1099-1122. Zug: Springer Nature, 2019
Deliktaş, BABÜR Et Al. "Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels." Handbook of Nonlocal Continuum Mechanics for Materials and Structures , Springer Nature, 2019, pp.1099-1122.
Deliktaş, B. Turtuk, I. C. And Voyiadjis, G. Z. (2019) "Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels", Handbook of Nonlocal Continuum Mechanics for Materials and Structures . Zug: Springer Nature.
@bookchapter{bookchapter, author ={BABÜR DELİKTAŞ Et Al. }, chaptertitle={Modeling Temperature-Driven Ductile-to-Brittle Transition Fracture in Ferritic Steels}, booktitle={ Handbook of Nonlocal Continuum Mechanics for Materials and Structures}, publisher={Springer Nature}, city={Zug},year={2019} }