董恩纯

研究生导师简介 

姓名:董恩纯,性别:

学科专业:机械工程

学历及学位:研究生/博士

职称:讲师

职务:无

联系方式(邮箱):dongenchun@qzc.edu.cn

研究方向:

增材制造(3D打印)、多尺度结构创新设计、医工交叉、生物力学

主要科研项目:

[1]浙江省自然科学基金青年项目,《胸腰椎融合系统“性--形”三元协同优化设计与性能评价研究》(LQN26A020015),2026.01-2027.1210万元, 主持。

[2]陕西省自然科学基金青年项目,《压电诱导再生的大段骨仿生制造》(2022JQ-378),2022.01-2023.125万元,参与。

[3]衢州市科技攻关竞争性项目,《面向产业升级的轴承钢激光辅助切削机理与工艺前沿研究》(2025K199),2026.01-2027.1215万元,参与。

[4]企业横向课题,《机器人的数字孪生使能平台与系统开发》(H2025162),2025.12-2027.12100万元,参与。

近期代表性论文及成果:

[1]Dong EC*, Yang Y, Qi ZT, Zhang XQ, Ma R, Wang JC, Wei YL, Zhou T, Sheng CC. Tailoring mechanical properties in FFF-printed PEEK/CF scaffolds: The role of fiber content and raster angle, Polymer Testing, 2026, 156, 109130.

[2]董恩纯, 康建峰, 孙畅宁, 李涤尘, 罗洋, 王玲, 栗向东. 3D打印金属椎体替代物力学性能评价. 医用生物力学, 2024. 39(1), 76-83.

[3]Dong EC, Wang L, Lei S, Kang JF, Li DC, Liu B, Guo Z, Wang L, Li XD. Biomechanical characterization of vertebral body replacement in situ: Effects of different fixation strategies. Computer Methods and Programs in Biomedicine, 2020, 197, 1-8.

[4]Dong EC, Iqbal T, Fu J, Li DC, Liu B, Guo Z, Cuadrado A, Zhen Z, Wang L, Fan HB. Preclinical strength checking for artificial pelvic prosthesis under multi-activities A case study. Journal of Bionic Engineering, 2019, 16(6), 1092-1102.

[5]Dong EC, Wang L, Iqbal T, Li, DC, Liu YX, He JK, Zhao BH, Li Y. Finite element analysis of the pelvis after customized prosthesis reconstruction. Journal of Bionic Engineering, 2018, 15(3), 443-451.

[6]Ma R, Luo LP, Wang JY, Deng XF, Dong EC*, Jin QL. Thermal analysis of composite plates with graphene nanoplatelets reinforcements. Mechanics of Advanced Materials and Structures, 2025,1-13. 

[7]Sun CN #, Dong EC#, Tian YC, Kang JF, Zheng JB, Zhang Q, Wang L, Liu CZ, Wang L, Li DC. Functional biomimetic design of 3D printed polyether-ether-ketone flexible chest wall reconstruction implants for restoration of the respiration. Materials and Design, 2024, 237, 1-12.

[8]王玲, 董恩纯. 3D打印定制假体骨科应用81[M]. 科学出版社, 2021.

[9]Sun CN, Dong EC, Wang L, 3D-Printed Prosthesis in Orthopedic Oncology: Part 1 Design of 3D-Printed Custom-Made Prostheses[M]. Spring, 2025.