岭南师范学院 机电工程学院

胡子健

作者: 发表日期:2026年01月22日 08:57 点击量:

一.个人简介:

胡子健,男,博士,讲师,199512月生,河南信阳人,中共党员。

主要从事激光粉末床熔融金属基复合材料及结构设计研究,发表论文20余篇

二.教育背景:

2014-92018-6,韶关学院,机械设计制造及其自动化,学士

2018-92021-6,广东工业大学,机械工程,硕士

2021-92025-12,广东工业大学,机械工程,博士

工作经历:

2025-12至今,岭南师范学院,机电工程学院教师。

主要教授课程:

液压传动与控制

主要教学科研成果:

1)发表论文

[1] Zijian Hu, Ansen Wang, Wenxin Yang, et al. Microstructural and mechanical analysis of TiCN-reinforced AlMgScZr composites fabricated via laser powder bed fusion: insights into triple periodic minimal surface lattice structures. Journal of Materials Science & Technology. 2026, 245: 60-76. (中科院一区,SCI Impact Factor 14.3)

[2] Zijian Hu, Xiaonan Ni, Wenxin Yang, et al. Optimizing microstructure and mechanical performance in LPBF-processed TiCN-AlZnMgCu composites: From composition to TPMS reinforcement. Journal of Alloys and Compounds. 2025, 1039: 183172. (中科院二区,SCI Impact Factor 6.3)

[3] Zijian Hu, Wenxin Yang, Zhenjie Hu, et al. Fabrication of high-performance Al-Cu-Mg matrix composites via laser powder bed fusion: Incorporating advanced materials and lattice structures. Materials Science and Engineering: A. 2024, 918:147418. (中科院二区,SCI Impact Factor 6.1)

[4] Zijian Hu, Zhe Zhao, Xin Deng, et al. Microstructure and mechanical behavior of cemented carbide with Al alloy binder fabricated by selective laser melting. International Journal of Refractory Metals and Hard Materials. 2022, 108:105916. (中科院二区,SCI Impact Factor 4.6)

[5] Zijian Hu, Zhe Zhao, Xin Deng, et al. Microstructure and mechanical behavior of TiCN reinforced AlSi10Mg composite fabricated by selective laser melting. Materials Chemistry and Physics. 2022, 283:125996. (中科院三区,SCI Impact Factor 4.7)

[6] Kai Li, Zijian Hu, Wenxin Yang, et al. Selective laser melting and mechanical behavior of Mo-coated diamond particle reinforced metal matrix composites. Diamond and Related Materials. 2024, 144:110952. (中科院三区,SCI Impact Factor 5.1)

[7] Xiaonan Ni, Zijian Hu, Ansen Wang, et al. Advanced thermodynamic analysis of molten pool evolution in laser powder bed fusion of TiCN-reinforced AlSi10Mg composites: unveiling process mechanisms for enhanced additive manufacturing. Optics & Laser Technology. 2025, 188:112932. (中科院二区,SCI Impact Factor 5)

[8] Xiaonan Ni, Yanxun Liang, Zijian Hu, et al. Hatch Spacing's Thermodynamic Impact on AlSi10Mg Alloys in Selective Laser Melting: An Integrated Study. Metallurgical and Materials Transactions B. 2025, 56: 2137-2143. (中科院三区,SCI Impact Factor 3.1).

[9] Xiaonan Ni, Ansen Wang, Zijian Hu, et al. Thermodynamic study of molten pool during selective laser melting of AlSi10Mg alloy. Thermal Science. 2024, 28: 5231-5243. (中科院四区,SCI Impact Factor 1.1).

[10] Wenxin Yang, Shidi Li, Zijian Hu, et al. Effects of Cr3C2 additive on the microstructure and mechanical behavior of binder jetting additive manufactured cemented carbides. International Journal of Refractory Metals and Hard Materials. 2025, 128:107003. (中科院二区,SCI Impact Factor 4.6)

[11] Wenxin Yang, Teli Liu, Zijian Hu, et al. Microstructure and mechanical behavior of selective laser melted cast carbide reinforced 316L stainless steel matrix composites. International Journal of Refractory Metals and Hard Materials. 2024, 123:106753. (中科院二区,SCI Impact Factor 4.6)

[12] Wenxin Yang, Wentao He, Zijian Hu, et al. Fabrication of Inconel 718 composites reinforced with TiCN via laser powder bed fusion: Integration of triply periodic minimal surface lattice structures. Journal of Materials Research and Technology. 2024, 32:2443-2458. (中科院二区,SCI Impact Factor 6.6)

[13] Wenxin Yang, Xiaonan Ni, Zijian Hu, et al. Influence of diamond particle size on the mechanical and tribological characteristics of vat photopolymerization-additive manufactured diamond tools with special structure designs. Composites Communications. 2025, 59:102568. (中科院二区,SCI Impact Factor 7.7)

[14] Zhe Zhao, Xiaonan Ni, Zijian Hu, et al. A Short Review of Advancements in Additive Manufacturing of Cemented Carbides. Crystals. 2025, 15:146. (中科院四区,SCI Impact Factor 2.4)

2)专利

[1] 胡子健,李瑞,陈观侨,等. 基于金属-陶瓷复合粉末材料的3DP打印方法. 发明专利号:ZL202411823331.5.

[2] 胡子健邓欣,刘特力,等. 一种陶瓷-金属复合材料增材制造方法. 发明专利号:ZL202210661237.9.

[3] 胡子健邓欣杨温鑫,等.一种粘结剂喷射增材制造的三周期阵列极小曲面过滤器. 发明专利号:ZL202520086061.8.

[4] 胡子健,李瑞,陈观侨,等. 用于3DP打印件的熔渗装置. 实用新型专利号:ZL202423060145.

[5] 赵哲,杨温鑫,胡子健,等. 改性金刚石增强堇青石陶瓷基复合材料的增材制造方法. 发明专利号:ZL202311465853.8.

[6] 倪培燊,邓欣胡子健. 一种金刚石/立方氮化硼陶瓷复合材料DLP成型方法. 发明专利号:ZL202110736224.9.

[7] 杨温鑫,邓欣胡子健,等. 一种粘结剂喷射用金刚石复合材料及其增材制造方法. 发明专利号:ZL202411908218.7.

[8] 杨温鑫,邓欣胡子健,等. 金属陶瓷复合材料的增材制造方法和应用. 发明专利号:ZL202410119157. X.