
一、基本简历
陈玉奇(1988年),女,2023年至今,南阳师范学院智能制造与电气工程学院讲师/副教授,主要承担智能制造技术等专业课程的教学,主要研究方向为电子器件设计及应用研究。
2006-2010河南理工大学材料科学与工程本科,2010-2013河南理工大学材料科学与工程硕士,2013-2016室兰工业大学功能复合材料专业工学博士。2016-2017室兰工业大学环境友好材料中心博士后研究员。2017-2023上海电机学院机械/材料学院专任教师。
二、教学科研
1.主讲课程:先进制造技术,智能制造,材料分析测试技术,工程技术写作,再制造工程基础等。
2.承担的实践教学 智能制造技术实验课程、指导本科生毕业论文。
3.发表的部分学术文章
[1] Yuqi Chen; et al., Sintering and Tribological Properties of Ti3SiC2-TiSix Composite Sintered by High-Pressure High-Temperature Technology. Materials, 2024, 17(19): 4866.
[2] Yuqi Chen; et al., Rapid Synthesis and Sintering of La2O2S and Its Physical, Optical, and Mechanical Properties.Coatings, 2024, 14(9): 1120.
[3] Yuqi Chen; et al.,In Situ Synthesis and Tribological Characterization of TiC–Diamond Composites: Effect of the Counterface Material on Wear Rate and Mechanism.Coatings, 2024, 14(6): 735.
[4] Yuqi Chen; et al.,Preparation of Ti3Si0.8Al0.2C2 Bonded Diamond Composites and Their Friction Properties Coupled with Different Counterfaces.Advances in Materials Science and Engineering, 2023, 2023: 1-14.
[5] Yuqi Chen, et al., Fabrication, sintering, heat capacity, magnetic and magnetroresistivity properties of ytterbium sulfides, Journal of Magnetism and Magnetic Materials, 2019, 476: 289~296.
[6] Yuqi Chen, et al., The structural, transport, and magnetic properties of Yb-filled skutterudites YbyFexCo4-xSb12 synthesized under high pressure, Journal of Applied Physics, 2016, 120(23): 235105.
[7] Yuqi Chen, et al., The influence of self-doping of stibnite ore impurities on the preparation, heat capacity, magnetic and transport properties of tetrahedrite Cu12Sb4S13. Materials Science-Poland.2020,38(3):484-492.
[8] Yuqi Chen, et al., Enhanced thermoelectric performance of optimized Yb-filled and Fe-substituted skutterudite compounds Yb0.6FexCo4-xSb12, Japanese Journal of Applied Physics, 2016, 55(4S): 04EJ02.
[9] Yuqi Chen, et al., Thermoelectric properties of YbxCo4Sb12 prepared under high pressure, Japanese Journal of Applied Physics, 2015, 54(5): 055501.
[10] Yuqi Chen, et al., Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres. Shinji Hirai, Materials Science-Poland, 2018, 36: 616-622.