承担项目: [1] 国家自然科学基金项目:共格纳米析出NiCoFe基中熵合金的动态塑性变形及绝热剪切机理研究,2022/01-2024/12,主持; [2] 山西省自然科学基金项目:梯度多级纳米结构中熵合金的冲击变形制备及其微观组织演化机理研究,2022/01-2024/12,主持; [3] 横向:含能XXX活性材料制备及动力学性能测试,2023/06-2024/06,主持; [4] 横向:密封材料力学测试,主持; 参与青年科学基金项目(A类)等项目多项。 截止2025年累计发表论文50余篇,以第一/通讯作者在Int. J. Plasticity、JMST、MRL、Appl. Phys. Lett.、Scripta Mater.等国内外知名期刊上发表论文20余篇。论文总引用1500余次,H因子19,单篇最高他引280余次,连续6年入选ESI高被引论文。授权专利10件,转化1件。指导本科生省级大创项目1项。 代表性论文: [1] Zhang TW, et al. Simultaneous enhancement of strength and ductility in a NiCoCrFe high-entropy alloy upon dynamic tension: Micromechanism and constitutive modeling. International Journal of Plasticity, 124 (2020) 226-246. (ESI高被引) [2] Jiao MX, Zhang TW*, et al. Superior cryogenic strength-ductility synergy in a multiphase lamellar structured metastable high-entropy alloy. Journal of Materials Science & Technology, 2026, 257: 73-86. [3] Cao TF, Zhang TW*, et al. The heterogeneity of mechanical response in gradient-structured CoCrNi alloy deformed upon quasi-static and dynamic compression. Materials Research Letters, 2025, 13(11): 1133-1142. [4] Wang Q, Zhang TW*, et al. Hierarchical precipitates facilitate the excellent strength-ductility synergy in a CoCrNi-based medium-entropy alloy. Materials Science & Engineering A, 2023, 873:145036. [5] Zhang TW, et al. Dynamic deformation behaviors and constitutive relations of an AlCoCr1.5Fe1.5NiTi0.5 high-entropy alloy. Scripta Materialia, 2017, 136: 15-19. [6]Tuanwei Zhang, et al.Temperature-dependent mechanical behavior in a novel hierarchical B2-strengthened high entropy alloy: Microscopic deformation mechanism and yield strength prediction. Materials & Design,2024, 248:113488. [7] Zhang TW, et al. Role of carbon on the enhanced strength-ductility synergy in a high-entropy alloy by multiple synergistic strategies. Journal of Alloys and Compounds, 2024, 1003:175698. [8] Cao TF, Zhang TW*, et al. Formation and deformation mechanisms of gradient structures: The role of strain hardening[J]. Materials & Design, 2025, 256: 114245. [9] 张团卫,等. 高速撞击诱导大梯度纳米结构化高熵合金的力学行为.科学通报, 24(2023):3125-3136. [10] Chang H, Zhang TW*, et al. Deformation-induced HCP phase transformation of CrCoNiSi0.3 medium-entropy alloy under high strain rate tension. Applied Physics Letters, 2024, 124. [11] Chang H, Zhang TW*, et al. Cryogenic mechanical behavior and FCC → HCP phase transformation mechanism in a Si-added CrCoNi medium-entropy alloy under quasi-static and dynamic tension. Materials & Design, 2024, 244:113131. [12] Du SY, Zhang TW*, et al.Strength-ductility synergy and grain refinement mechanisms in a Co-Cr-Ni medium-entropy alloy with novel analogous harmonic structure. Scripta Materialia, 2023, 235: 115635. [13] Luo SH, Zhang TW*,et al. Ultra-high work hardening mediated by three-level precipitation in a Ni2CoCr0.5Si0.3Al0.2Ti0.2 medium entropy alloy. Journal of Materials Research and Technology, 2023, 25: 3093-3103. [14] Wang SH, Zhang TW*,et al. Tuning the microstructure and strengthening mechanism of the CoCrFeNi high-entropy alloy via doping metalloid and interstitial elements. Journal of Alloys and Compounds, 2023, 960:170622. [15] 李旺, 张团卫*,等. 基于分离式霍普金森杆的铝合金板料高速冲击液压成形有限元模拟与试验研究.塑性工程学报, 2025, 32 (3): 78-89. [16] 曹泰逢, 张团卫*,等. 深层梯度结构钢在动态冲击下的力学行为与微观组织演变.爆炸与冲击, 2026-02-09. 代表性专利: [1] 张团卫;杜时雨;王志华. 高强韧异质多相“核壳”组织结构中熵合金及其制备方法. 2022-12-02,中国, ZL 202211137816.X. [2] 张团卫;杜时雨;王志华. 高铝高钛含量纳米共格沉淀强化的CoCrNi基中熵合金及其制备方法. 2022-12-23,中国, ZL 202211133897.6. [3] 张团卫;白天祥;焦志明;王志华. 低成本耐热不锈中熵合金及其制备方法. 2023-11-07,中国, ZL 202310981506.4. [4] 张团卫; 汪泽霖; 侯宝义; 王子杰; 关嘉鑫; 李志强; 王志华. 用于薄带微结构制造的高压可控空化射流成形装置及方法. 2025-10-28,中国, ZL202511052859.1. [5] 张团卫; 王子杰; 关嘉鑫; 张书恺; 侯宝义; 汪泽霖; 李志强; 王志华. 一种基于超高速冲击液压的板材成形装置. 2026-02-03,中国, ZL 202511453987.7. [6] 张团卫; 李旺; 王志华. 一种在霍普金森杆上使用的横卧式板类试样冲击成形实验研究的模具装置. 2026-02-06,中国, ZL 202310701557.7. [7] 王志华; 李旺; 张团卫.一种基于冲击液压原理用于板材加工的超高速成形装置. 2023-12-12,中国, ZL 202311223241.8. 学术交流: [1] The 9th International conference on nanomaterials by Severe Plastic deformation, 2025.10.31-11.03, Beijing, China. (分会场邀请报告) [2] 第十四届全国爆炸力学学术会议, 2023.11.17-19, 广西南宁. (分会场邀请报告) [3] 第十五届全国爆炸力学学术会议, 2025.6.27-29, 浙江绍兴. (分会场邀请报告) [4] 特种粉末冶金及复合材料制备/加工第八届学术会议, 2024.12.27-29, 湖南长沙. (分会场邀请报告) 学生培养: 截止2025年协助指导毕业博士生2人,指导硕士生8人,一人获山西省优秀硕士论文。毕业生去向包括华南理工(读博)、中航光电、比亚迪、汾西重工、太钢等企业。 |