
盛捷,女,储能研究院副院长,副研究员,硕士生导师,工学博士(后)。
邮箱:shengj605@163.com
高性能结构金属全生命周期性能协同研究团队网站:https://www.x-mol.com/groups/LUT_Tangteam/people
主要研究方向为:高性能钢铁材料;先进能源用钢的材料设计、制备与应用技术;电化学储能技术。
担任甘肃省新能源协会风能专委会主任委员;中国微米纳米技术学会会员;甘肃省科技专员;白银市科技特派员;《钢铁》青年编委;《稀有金属》青年编委;MS: ACM期刊编委;甘肃省材料学会青委会委员;甘肃省材料学会会员,多个SCI期刊审稿人。近年来主持省部级纵向科研项目10余项,校级项目4项、企业横向10余项,获得厅局级一等奖1项(第一完成人),主持科技成果鉴定1项,完成发明专利6件,发表论文60余篇,其中以一作或通讯作者身份发表SCI收录论文20余篇。先后获得“甘肃省学位与研究生教育学会先进工作者”,兰州理工大学“三育人”(2次),“优秀共产党员”,“工会积极分子”,“三八”优秀女职工,“十佳辅导员”,“优秀班主任”,暑期实践“三下乡”优秀指导教师等荣誉称号。
办公地点:兰工坪校区综合实验大楼1218室
办公电话:0931-2939798
主要发表论文:
[1] Sheng J, Lin QY, Pushanov A, et al. Vanadium-induced high-temperature oxidation deterioration mechanism of 019Cr18CuNb ferritic stainless steel[J]. Journal of Materials Research and Technology, 2026, 44: 2947-2965.
[2] 高阳,盛捷*,徐建林,等. 冷轧退火对019Cr21CuTiNb不锈钢的组织影响及原位拉伸性能[J]. 兰州理工大学学报,2026, 52(4):1-9.
[3] Sheng J, Zhang DY, Li ZY, et al. g-C3N4/porous carbon co-coated (Co, Mn, Fe)S microcubes with ternary heterojunction for boosting the performance of sodiumion batteries[J]. Materials Today Energy, 2026, 102338.
[4] Sheng J, Liang YJ, Tang XC, et al. Effect of annealing temperature on the precipitation characteristics and multi mechanism strengthening in T4003 ferritic stainless steel[J]. Journal of Materials Engineeing and Performance, 2026.
[5] Sheng J, Li Y, Chai SY, et al. Crystalline/Amorphous Interface Engineering for Superior Sodium Ion Storage[J]. ACS Applied Materials & Interfaces, 2026, 18: 16407-16420.
[6] 盛捷,雷嵘,唐兴昌,等. 酸蚀作用下预制裂隙岩石单轴压缩力学特性研究[J]. 兰州理工大学学报,2025,51(6):18-28.
[7] Sheng J*, Ma JJ, Wei FF, et al. Study on the mechanical properties and constitutive model of Q420 steel under different strain rates[J]. Nano, 2025, 2550023: 1793-2920.
[8] Ma GC, Sheng J*, Gao Y, et al. Effect of annealing temperature on microstructure and mechanical properties of 00Cr21CuTi stainless steel cold-rolled sheets[J]. Metals, 2024, 14(12), 1367: 1-15.
[9] Meng YH, Sheng J*, Ma ZW, et al. The influence of the hot-rolling temperature on the microstructure and mechanical properties of Ti-Nb microalloyed 21%Cr ferritic stainless steel[J]. Metals, 2024, 14(10), 1099:1-19.
[10] Sheng J*, Man K, Ma GC, et al. Effect of annealing temperature on properties and second phase characteristics of 443 hot-rolled sheets[J]. Ferroelectrics, 2024, 618(13-14): 2181-2195.
[11] 盛捷,魏佳富,孟亚惠,等. 21Cr超纯铁素体不锈钢TiN析出的热动力学研究[J]. 兰州理工大学学报,2023, 49(5): 1-9.
[12] SHENG J, DU MC, LI YF, et al. Deformation mechanism of bimodal structured 2205 duplex stainless steel in two yield stages[J]. Journal of Wuhan University of Technology-Materials Science Edition, 2023, 38(1):184-191.
[13] Li YF, Sheng J*, Wang JW. Effect of Ni content on microstructure and mechanical properties for cold rolled 301L stainless steel[J]. Ferroelectrics, 2023, 607, 173-185.
[14] SHENG J, WEI JF, LI ZN, et al. Micro/nano-structure leads to super strength and excellent plasticity in nanostructured 304 stainless steel[J]. Journal of Materials Research and Technology, 2022, 17: 404-411.
[15] SHENG J, JIN J, SHI Y, et al. Superior Strength and Ultrahigh Ductility in Hierarchical Structured 2205 Duplex[J]. Materials Transactions, 2021,62(11): 1604-1608.
[16] MA GC, SHENG J*, MENG Q, et al. Effect of heterogeneous composite structure on the microstructure and properties for nanostructured 2205 duplex stainless steel[J]. Integrated Ferroelectrics, 2021, 217(1): 190-197.
[17] Meng YH, Sheng J* , Ma ZW, et al. The influence of the hot-rolling temperature on the microstructure and mechanical properties of Ti-Nb microalloyed 21%Cr ferritic stainless steel[J]. Metals, 2024, 14(10), 1099:1-19.
[18] Sheng J*, Man K, Ma GC, et al. Effect of annealing temperature on properties and second phase characteristics of 443 hot-rolled sheets[J]. Ferroelectrics, 2024, 618(13-14): 2181-2195.
[19] SHENG J, DU MC, LI YF, et al. Deformation mechanism of bimodal structured 2205 duplex stainless steel in two yield stages [J]. Journal of Wuhan University of Technology-Materials Science Edition, 2023, 38(1): 184-191.
[20] SHENG J, WEI JF, LI ZN, et al. Micro/nano-structure leads to super strength and excellent plasticity in nanostructured 304 stainless steel[J]. Journal of Materials Research and Technology, 2022, 17: 404-411.
[21] 盛捷,喇培清,任军强,等. SEM原位观察双尺度纳米晶304不锈钢的断裂行为[J]. 兰州理工大学学报,2019, 45(2): 10-15.