首页 > 学院概况 > 教师名录 > 讲师 > 正文 正文

讲师

温东东(博士)

来源:      阅读量:     发布时间:2026-09-03 14:23

       姓名:温东东

       职称:讲师

       邮箱:ifdong0923@163.com

个人基本情况

温东东(Wen Dongdong,Doctor),1993年生,江西省宜春人,工学博士,硕士生导师。主要从事精密磨削加工工艺及装备、激光微纳成型制造、难加工材料高效低损伤加工技术等方面的研究。先后主持参与国家级与省部级科研项目5项,包括国家自然科学基金项目、国家重大科研仪器研制项目等多项省部级项目,主持横向项目3项。在《Journal of Manufacturing Processes》《Ceramics International》《International Journal of Thermal Sciences》《Materials Today Communications》等国内外期刊发表学术论文10余篇。

主要研究方向

激光微纳制造

仿生表面结构化砂轮

齿轮成形磨削

复合材料高效低损伤加工

开设课程

机械制造基础

电工电子技术

机械工程专业英语

近年的科研项目、专著与论文、专利、获奖

主持科研项目:

1. 2022年湖南省研究生科研创新重点项目,CX20221043,仿鸟羽微槽结构纳米自润滑金刚石砂轮磨削性能调控与优化技术研究,2022/06-2024/06,结题,主持

2. 2018年湖南省研究生科研创新一般项目,CX2018B781,基于脉冲激光诱导的大磨粒CBN砂轮表面螺旋微结构化及其磨削机理研究,2018/11-2020/06,结题,主持

3. 国家自然科学基金委员会,国家重大科研仪器研制项目,52227809,小模数齿轮超精密测量仪器研制,2023/01-2027/12,在研,参与

申请/授权发明专利:

C/C-SiC复合材料专用砂轮及其制造方法和磨削应用,发明人:温东东;谢督尧;张晓红;刘磊;许志成;万仪;刘佳妍. 202610832292.8

基于镓浸润的双极板表面微结构激光加工装置与方法,发明人:温东东;刘佳妍;张晓红;谢督尧;万仪. 2026073001001840

小模数齿轮误差测量与智能补偿软件,发明人:张晓红;温东东;石照耀. 2019SR0908934

代表性著作:

[1] Wen DD*, Xu ZC, Zhang XH, et al. Effect of multi-level leaf vein structure grinding wheels on the flow characteristics and grinding performance for silicon carbide[J]. International Journal of Thermal Sciences, 2026, 226: 110876.

[2] Wen DD*, Xie DY, Zhang XH, et al. Preparation and grinding performance of a multilevel leaf-vein structured grinding wheel for silicon carbide ceramic. [J].Ceramics International, 2026, 52(13): 21584-21603.

[3] Zhang XH, Xu ZC, Wen DD*, et al.Parametric optimization and wetting mechanism analysis of picosecond laser-induced microstructures on ruby spheres[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2026, 737(2): 139903.

[4] Wen DD, Zhang XH*, Wan LL, et al. Design and grinding performance evaluation of a bionic structured diamond grinding wheel based on multiscale leaf vein fractal mesh[J].The International Journal of Advanced Manufacturing Technology, 2025, 139(1):379-397.

[5] Wen DD, Wan LL, Zhang XH*, et al. Wear characteristics of diamond grinding wheels with biomimetic structures in grinding silicon carbide ceramics[J]. Materials Today Communications, 2025, 112071(44):2352-4928.

[6] Zhang XH, Xie DY, Wen DD*, et al. Simulation and experimental analysis of gallium infiltration into the surface integrity of glass-ceramics in single abrasive grain scratch experiments[J]. Materials Today Communications, (2025): 114501.

[7] Wen DD, Wan LL*, Zhang XH, et al. Grinding performance evaluation of SiC ceramic by bird feather-like structure diamond grinding wheel[J]. Journal of manufacturing processes, 2023, 95:382-391.

[8] 温东东, 张晓红*, 万林林, 蒋洁, 丁跃浇, 何田仲森. 仿鸟羽结构自润滑金刚石砂轮磨削碳化硅陶瓷实验研究[J]. 表面技术, 2023, 52(12): 91-101.

[9] Zhang XH, Wen DD*, Shi ZY, et al. Grinding Performance Improvement of Laser Micro-structured Silicon Nitride Ceramics by Laser Macro-structured Diamond Wheels[J]. Ceramics International, 2020, 46( 1):795-802.

(责编/王荣荣 初审/李罗娜 终审/周勇)