主要科研项目
国家自然科学基金面上项目,主持,54万,2023.01-2026.12,基于飞秒激光脉冲序列的蓝宝石/金属连接机理及接头强度
国家自然科学基金青年基金项目,主持,12万,2020.01-2020.12,超快激光复合法制备三级复杂微纳超疏水表面结构与Cassie-Baxter状态稳定性研究
中国博士后面上基金,主持,5万,基于可控复杂微纳多级结构的超疏水表面稳定性研究
先进焊接与连接国家重点实验室开放课题面上项目,主持,5万,蓝宝石与金属飞秒激光微连接机理研究
2022年度科技智库青年人才计划,主持,5万,透明陶瓷/金属超快激光连接前沿技术的发展趋势与战略研究
国家自然科学基金专项项目,参与,5万
科技部重点专项项目,参与。
科研获奖
2020年,异质材料焊接与连接先进技术研究及应用发展论坛“优秀论文”
2021年,《中国激光》杂志优秀论文主编推荐奖、
2021年,“精品期刊顶尖论文平台——领跑者5000”优秀论文
2022年,第十五届设计与制造前沿国际会议“优秀论文奖”
2022年,高被引论文1篇
近年代表性论文
[1]R. Pan; H. Zhang; M. Zhong*; Triple-Scale Superhydrophobic Surface with Excellent Anti-Icing and Icephobic Performance via Ultrafast Laser Hybrid Fabrication, ACS Applied Mater ials & Interfaces, 2021, 13: 1743-1753.
[2]R. Pan, M. Cai, W.Liu, M. Zhong*, Extremely high Cassie–Baxter state stability of superhydrophobic surfaces via precisely tunable dual-scale and triple-scale micro–nano structures. J. Mater. Chem. A. 2019, 7: 18050-18062.
[3]S. Kovacevic*, R. Pan*, D.P. Sekulic, S. Mesarovic. Interfacial energy as the driving force for diffusion bonding of ceramics. Acta Materialia. 2020, 186: 405-414.
[4]R. Pan, M. Cai, W. Liu, M. Zhong*. Ultrafast Laser Hybrid Fabrication of Hierarchical 3D Structures of Nanorods on Microcones for Superhydrophobic Surfaces with Excellent Cassie State Stability and Mechanical Durability. J. Laser App. 2020, 32(2):022047.
[5]R. Pan, M Zhong*. Fabrication of superwetting surfaces by ultrafast lasers and mechanical durability of superhydrophobic surfaces. Chin. Sci. bull. 2019, 64: 1268-1289.
[6]R. Pan, P. He*, T. Lin*, Z. Huang, D.P. Sekulic* et al. Design of the multiple transition metals interlayer process to diffusion bond ZrCx ceramics. Materials & Design. 2018, 137: 47-55.
[7]R. Pan, P. He*, T. Lin*, D.P. Sekulic*, Z. Huang, H. Wei, Z. Yang, Cross-diffusion phenomena within a ZrCx–Zr–ZrCx joint, J. Eur. Ceram. Soc. 2017, 37: 2779-2786.
[8]R. Pan, T.G. Gutowski*, D P. Sekulic*. Built environment energy trade-offs scaling. Energy. 2017, 141: 1374-1383.
[9]R. Pan, S. Kovacevic, T. Lin, P. He*, D. P. Sekulic*, et. al. Control of residual stresses in 2Si-B-3C-N and Nb joints by the Ag-Cu-Ti + Mo composite interlayer. Materials & Design. 2016, 99: 193–200.
[10]潘瑞,张红军,钟敏霖.三级微纳超疏水表面的超快激光复合制备及防除冰性能研究.中国激光, 2021, 48(2): 0202009.