代表性著作
1. Zhao J W, Wang X C, Yang Q, et al. Mechanism of lateral metal flow on residual stress distribution during hot rolling[J]. Journal of Materials Processing Technology. 2020, 288: 116838.
2. Zhao J W, Wang X C, Yang Q, Wang Q N, Liu C, Song G Y. High precision shape model and presetting strategy for strip hot rolling. Journal of Materials Processing Technology, 2019, 265: 99-111.
3. Zhao J W, Yang Q, Wang X C. Physical modeling of flow stress during the hot deformation of Nb steels. Materials Science Forum. 2019, 944: 247-253.
4. Song G Y, Wang X C, Yang Q, et al. Optimization technology of roll contours during skin-pass rolling process of hot-rolled strip. Materials Science Forum, 2019, 944: 237-246.
5. Song G Y, Wang X C, Yang Q. Study on mathematical model of work roll wear in skin-pass rolling of hot steel strip. International Journal of Advanced Manufacturing Technology, 2018, 97(5-8): 2675-2686.
6. Song G Y, Yang Q, Wang X C. Research on wear evolution laws of the work rolls during hot temper rolling process. Journal of Failure Analysis and Prevention, 2018, 18(4): 912-919.
7. Dong F, Wang X, Yang Q, et al. In-situ measurement of Ti-6Al-4V grain size distribution using laser-ultrasonic technique. Scripta Materialia, 2018, 154: 40-44.
8. Zhang Y, Wang X, Yang Q, et al. Characterization of mean grain size of interstitial-free steel based on laser ultrasonic. Journal of Materials Science, 2018, 53(11): 8510-8522.
9. Zhang Y J, Wang X C, Yang Q, et al. Nondestructive Evaluation Method of Average Grain Size in TWIP Steel by Laser Ultrasonic. Materials Science Forum, 2018, 913:324-330.
10. Dong F, Yang Q, Krishnaswamy S. Grain size distribution measurement of Ti-6Al-4V plate using laser-ultrasonics. Acoustical Society of America Journal, 2017, 142(4):2546-2546.