Chabak, Y.; Petryshynets, I.; Efremenko, V.; Golinskyi, M.; Shimizu, K.; Zurnadzhy, V.; Sili, I.; Halfa, H.; Efremenko, B.; Puchy, V.
Investigations of Abrasive Wear Behaviour of Hybrid High-Boron Multi-Component Alloys: Effect of Boron and Carbon Contents by the Factorial Design Method. Materials 2023, 16, 2530.
https://doi.org/10.3390/ma16062530
AMA Style
Chabak Y, Petryshynets I, Efremenko V, Golinskyi M, Shimizu K, Zurnadzhy V, Sili I, Halfa H, Efremenko B, Puchy V.
Investigations of Abrasive Wear Behaviour of Hybrid High-Boron Multi-Component Alloys: Effect of Boron and Carbon Contents by the Factorial Design Method. Materials. 2023; 16(6):2530.
https://doi.org/10.3390/ma16062530
Chicago/Turabian Style
Chabak, Yuliia, Ivan Petryshynets, Vasily Efremenko, Michail Golinskyi, Kazumichi Shimizu, Vadym Zurnadzhy, Ivan Sili, Hossam Halfa, Bohdan Efremenko, and Viktor Puchy.
2023. "Investigations of Abrasive Wear Behaviour of Hybrid High-Boron Multi-Component Alloys: Effect of Boron and Carbon Contents by the Factorial Design Method" Materials 16, no. 6: 2530.
https://doi.org/10.3390/ma16062530
APA Style
Chabak, Y., Petryshynets, I., Efremenko, V., Golinskyi, M., Shimizu, K., Zurnadzhy, V., Sili, I., Halfa, H., Efremenko, B., & Puchy, V.
(2023). Investigations of Abrasive Wear Behaviour of Hybrid High-Boron Multi-Component Alloys: Effect of Boron and Carbon Contents by the Factorial Design Method. Materials, 16(6), 2530.
https://doi.org/10.3390/ma16062530