Back, J.-H.; Baek, D.; Shin, J.-H.; Jang, S.-W.; Kim, H.-J.; Kim, J.-H.; Song, H.-K.; Hwang, J.-W.; Yoo, M.-J.
Resistance to Cleavage of Core–Shell Rubber/Epoxy Composite Foam Adhesive under Impact Wedge–Peel Condition for Automobile Structural Adhesive. Polymers 2019, 11, 152.
https://doi.org/10.3390/polym11010152
AMA Style
Back J-H, Baek D, Shin J-H, Jang S-W, Kim H-J, Kim J-H, Song H-K, Hwang J-W, Yoo M-J.
Resistance to Cleavage of Core–Shell Rubber/Epoxy Composite Foam Adhesive under Impact Wedge–Peel Condition for Automobile Structural Adhesive. Polymers. 2019; 11(1):152.
https://doi.org/10.3390/polym11010152
Chicago/Turabian Style
Back, Jong-Ho, Dooyoung Baek, Jae-Ho Shin, Seong-Wook Jang, Hyun-Joong Kim, Jong-Hak Kim, Hong-Kyu Song, Jong-Won Hwang, and Min-Jae Yoo.
2019. "Resistance to Cleavage of Core–Shell Rubber/Epoxy Composite Foam Adhesive under Impact Wedge–Peel Condition for Automobile Structural Adhesive" Polymers 11, no. 1: 152.
https://doi.org/10.3390/polym11010152
APA Style
Back, J.-H., Baek, D., Shin, J.-H., Jang, S.-W., Kim, H.-J., Kim, J.-H., Song, H.-K., Hwang, J.-W., & Yoo, M.-J.
(2019). Resistance to Cleavage of Core–Shell Rubber/Epoxy Composite Foam Adhesive under Impact Wedge–Peel Condition for Automobile Structural Adhesive. Polymers, 11(1), 152.
https://doi.org/10.3390/polym11010152