人员队伍详细资料

周雪峰

发布时间:2024年08月23日 04时58分

基本信息


周雪峰

副教授,博士生导师

通讯方式:xuefengzhou@seu.edu.cn

办公地点:材料A楼520

个人简介

周雪峰,男,1982年生,江苏徐州人,博士,副教授,博士生导师。2011年获欢迎来到公海7108线路博士学位,2017-2018年赴美国Northwestern University访学,合作导师为美国工程院院士David Seidman教授。主要从事先进金属材料研究,研究方向包括基于人工智能的新材料设计开发、先进钛合金、特种铁基合金、高熵合金、粉末冶金新材料及智能金属材料等。主持或参与国家自然科学基金、省重大科技成果转化、重点研发计划、产学研联合创新资金等项目。获江苏省科学技术一等奖1项、二等奖1项、三等奖4项,欢迎来到公海7108线路青年教师授课竞赛三等奖1项。累计发表SCI、EI收录论文八十余篇,获授权国家发明专利三十余项。蒋建清课题组(欢迎来到公海7108线路先进材料研究中心)成员。(详见:/jjq/2023/0811/c29142a456431/page.htm)

u研究方向

1、人工智能(AI)驱动的先进合金设计开发:基于机器学习(ML)等人工智能新方法,辅助第一性原理计算等手段,开展先进合金的合成预测和性质预测、设计开发及实验验证,加速新材料研发进程。


Thermodynamic stability and mechanical properties of (V, M)C (M = W, Mo and Cr) multicomponent carbides: A combined theoretical and experimental study. Journal of Alloys and Compounds.

Optimization of thermal stability and mechanical properties of Mo2C carbides via multi-element doping: experimental and theoretical calculations. Journal of Materials Science.

2、先进钛合金设计与制备:面向航空航天、生物医用、人形机器人等领域,开展先进钛合金的设计与制备研究;研究超高强高韧钛合金制备技术,开发出目前已报道强度等级最高(2GPa)的商用钛合金线材;基于d-电子理论,开发新型多组元亚稳β钛合金,利用调幅结构、异质晶粒、分级结构等策略,实现高性能化。


Ultrafine grains enable high strength and unusual twinning behaviors in metastable β-titanium alloy. Materials Science and Engineering A.

Making titanium alloy ultra-strong yet ductile via the construction of an ultra-fine hierarchical lamella structure. Materials Science and Engineering A.

Achieving high strength and excellent hardenability in a metastable β-Ti alloy via architecting an unusual multi-leveled twinning structure. Materials Science and Engineering A.

Activating the highly desirable transformation-induced plasticity effect in cold-drawn Ti-6Al-4V wires through two-step annealing. Materials Science and Engineering A.

3、高熵合金设计与制备:开展面向严苛服役环境、有工程化应用前景的高熵合金成分设计与组织调控研究,融合亚稳工程、界面工程、异质结构等策略,开发高性能低成本高熵合金。


Heterostructure mediates sequential martensitic transformation in a metastable high-entropy alloy for excellent strength-ductility synergy at cryogenic temperature. Journal of Alloys and Compounds.

Precipitate-mediated metastability of a hetero-structured ferrous high-entropy alloy with superior strain hardening ability. Materials Science and Engineering A.

4. 先进金属的智能化和功能化应用:形状记忆合金(SMA)等智能材料在软体机器人结构设计领域的应用;钛合金表面耐蚀、医用生物、光学响应等功能化。

u研究成果

1、Kaiwen Liu, Ziru Han, Lichu Zhou, Hanchen Feng, Yiyou Tu, Feng Fang, Jianqing Jiang, Xuefeng Zhou*. Ultrafine grains enable high strength and unusual twinning behaviors in metastable β-titanium alloy. Materials Science and Engineering A, 957 (2026) 149984

2、ZiruHan, KaiwenLiu, LichuZhou,HanchenFeng, CaijunShi,FengFang, JianqingJiang, XuefengZhou*. Making titanium alloy ultra-strong yet ductile via the construction of an ultra-fine hierarchical lamella structure. Materials Science and Engineering A, 950 (2026) 149534

3、Xuefeng Zhou* , Zhengwei He, Jiaju Wu, Zilin Liu, Yiyou Tu, Feng Fang, Jianqing Jiang. Activating the highly desirable transformation-induced plasticity effect in cold-drawn Ti-6Al-4V wires through two-step annealing. Materials Science and Engineering A, 942 (2025) 148753.

4、Xuefeng Zhou*, Yu Jiang, Yawen Xia, Yiyou Tu, Feng Fang, Jianqing Jiang. Achieving high strength and excellent hardenability in a metastable β-Ti alloy via architecting an unusual multi-leveled twinning structure. Materials Science and Engineering A, 945 (2025) 148996

5、Ziru Han, Kaiwen Liu, Lichu Zhou, Feng Fang, Jianqing Jiang, Xuefeng Zhou*. Architecting unusual dual-gradient structures to overcome the strength-ductility trade-off in metallic materials. Journal of Materials Processing Technology, 335 (2025) 118670

6、超高强度钢丝制备技术研究及产业化,2017年度江苏省科学技术一等奖

7、高纯镓的制备技术及产业化,2015年度江苏省科学技术二等奖

8、超深油井用光电一体化传感测井电缆的研发及产业化,2022年度江苏省科学技术三等奖

9、海洋工程用大尺寸超级双相不锈钢无缝管研发及产业化,2019年度江苏省科学技术三等奖

10、稀土超硬高速钢及其工具产品的研制及产业化,2012年度江苏省科学技术三等奖