职 务:
专 业:固体力学
所在系所:固体力学研究所
通讯地址:甘肃省 兰州市天水南路222号兰州大学土木工程与力学学院,730000
电子信箱: suxy@lzu.edu.cn
联系电话:
传 真:
2014.09-2018.06 兰州大学土木工程与力学学院,理论与应用力学,理学学士学位
(合作导师:张兴义 教授,杨晶磊 教授)
1.2022.04-2023.03 YBCO带材过流脉冲力-电-热性能研究,甘肃省创新之星项目,主持
2.2024.01-2027.12,极端环境超导实验力学,国家自然科学杰出青年基金,参与
3.2021.07-2022.02,轨道温度及电压分布测试系统,中国兵器集团第二〇二研究所,参与
4.2016.01-2019.12,实验固体力学,国家自然科学优秀青年基金,参与
5.2019-2022,316LN 不锈钢在极低温环境下的锯齿状塑性屈服实验观测与机理研究,国家自然科学基金面上项目,参与
1.Xiyang Su, Zhiting Huang, Jun Zhou and Xingyi Zhang. Visualization investigation of the full-field temperature of the damaged YBCO CC after quenching in liquid nitrogen based on bubbles distribution[J]. International Journal of Heat and Mass Transfer, 2024, 223: 125283.
2.Xiyang Su, Zhingting Huang, Cong Liu and Xingyi Zhang.Controllable rectification on the irreversible strain limit of 2G HTS coated conductors[J]. Superconductor Science and Technology,2021,35(1):015003.
3.Xiyang Su, Liuyang Shen, Zhiting Huang, Cong Liu and Xingyi Zhang. Key Issues for Measuring the Mechanical-electro Properties of 2G HTS Coated Conductors[J]. IEEE Transactions on Applied Superconductivity. 2022,32(5), 9001604.
4.Xiyang Su, Cong Liu, Jun Zhou, Xingyi Zhang and Youhe Zhou. A method to access the electro-mechanical properties of superconducting thin film under uniaxial compression[J]. Acta Mechanica Sinica.2020,36(5):1046-1050.
5.Lang Jiang, Xiyang Su, Liuyang Shen, Jun Zhou, Xingyi Zhang, Damage behavior of Nb3Sn/Cu superconducting strand at room temperature under asymmetric strain cycling[J]. Fusion Engineering and Design, 2021, 172: 112869.
6.Xianglin Zhang, Suming Qiu, Yulong Wang, Jun Zhou, Xiyang Su, Xingyi Zhang and Youhe Zhou. Direct Measurement on the Residual Stress in YBa2Cu3O7-δ Bulk Superconductors Fabricated by Top-Seed Melt-Textured Method[J]. Acta Mechanica Solida Snica.34,157-162.
7.Xiaoyan Ye, Dengming Wang, Xingyi Zhang, Chaofeng Zhang, Wei Du, Xiyang Su and Gang Li. Projectile oblique impact on granular media: penetration depth and dynamic process[J]. Granular Matter, 23,48.
8.邓吉华,苏西洋,张兴义. 基于EuTFC的低温荧光热成像技术的非原位标定[J],实验力学,2023, 38(6).