头像
更新时间:2026.05.31
总访问量:10

陈泓谕

| 博士 高校副教授 博士生导师

单位:

职务:

研究方向:

办公地址: 屏峰校区计算机楼D205

办公电话: 0571-85290933

电子邮箱: hychen@zjut.edu.cn

手机访问
  • 个人简介

    陈泓谕,浙江工业大学机械工程学院副教授、博士生导师。浙江省杰出青年科学基金获得者,入选浙江省高校领军人才培养计划、浙江工业大学“十四五”高层次人才培育计划,主要从事钨合金制备及辐照损伤行为研究、硬脆材料超精密加工,主持或参与国家自然科学基金、国家重点研发计划、浙江省自然科学基金等10余项,在Journal of Materials Research and Technology、Transactions of Nonferrous Metals Society of China、Applied Surface Science、Journal of Nuclear MaterialsInternational Journal of Hydrogen Energy、Journal of Manufacturing Processes、Powder Technology、机械工程学报期刊发SCI/EI论文90余篇(一作/通讯35篇),授权发明专利10

    教育与工作经历

    2018.11-至今           浙江工业大学                        讲师、副教授  

    2021.01-2021.12      国家自然科学基金委             借调

    2019.05-2020.05      科技部交流中心                    借调

    2016.09-2018.03      日本九州大学                        CSC联合培养

    2009.09-2018.06      合肥工业大学                        本硕博

    任职与社会兼职

    中国钢结构协会粉末冶金分会理事,中国材料研究学会难熔金属分会委员,《中国有色金属学报(中、英文版)》、《Tungsten》、《稀有金属材料与工程》、《中国表面工程》、《稀有金属》、《中国钨业》、《粉末冶金工业》杂志青年编委。担任Engineering、Rare Metals、Nuclear Fusion、Journal of Alloys and Compounds、Journal of Manufacturing Processes、Journal of Materials Research and Technology、Ceramics International、Fusion Engineering and Design、CIRP Journal of Manufacturing Science and Technology、International Journal of Advanced Manufacturing Technology、Diamond & Related Materials、Ionics、Journal of Alloys and Compounds Communications等期刊审稿人。

    获奖情况

    [1] 2023年度浙江省科学技术进步一等奖:新一代绿媒HC制冷压缩机关键技术及产业化

    [2] 2024年度有色金属工业科学技术一等奖:高性能合金构件的绿色压缩机制造关键技术及产业化

    [3] 2024年中国国际大学生创新大赛铜奖(指导教师)

    [4] 2024年第十七届全国大学生节能减排社会实践与科技竞赛二等奖(指导教师)

    [5] 2023年第八届中国国际“互联网+”大学生创新创业大赛国赛银奖、省赛金奖(指导教师)

    [6] 2021年度机关党建课题报告优秀奖:抓实机关党建工作推动基础研究高质量发展——以国家自然科学基金委员会党建工作为例


    欢迎具有材料学、模拟仿真、材料加工等专业背景的同学加入课题组共同进步,招生要求:诚实守信、有责任心、勤劳努力、乐观开朗,能力可以一般,品行必须端正。



  • 教学与课程

    《超精密加工技术》《机械制造设计基础》《机械专业基础综合设计实践(留学生)》《文献检索与科技论文写作》

  • 育人成果


    2024年中国国际大学生创新大赛铜奖(指导教师)

    2024年第十七届全国大学生节能减排社会实践与科技竞赛二等奖(指导教师)

    2023年第八届中国国际“互联网+”大学生创新创业大赛国赛银奖、省赛金奖(指导教师)

    组织团队获2022年机械工程学院首届“三好三有”研究生导学示范团队

    担任2022级本科机械类7班、智能制造3班班主任

    担任2018级本科卓越工程师班班主任


    研究生

    指导研究生10人

    2021级硕士生王林 获2022、2023年研究生国家奖学金

    2022级硕士生吴锚喜、2023级硕士生洪彬彬 获2024年研究生国家奖学金

    2023级硕士生洪彬彬、2023级硕士生万红兵、2024级硕士生陈溢阳 获2025年研究生国家奖学金



    本科生

    2019级 钱慧  一种基于剪切膨胀效应的力流变抛光装置设计(优秀本科毕业设计)

    2018级 庞寅麒 PVC凝胶驱动器一体化成型的3D打印机设计(优秀本科毕业设计)


  • 科研项目

    国家级科研项目

    [1] 国家自然科学基金面上项目,52275467,2023/01-2026/12,54万,在研,主持.

    [2] 国家自然科学基金专项项目,J2324001,2023/09-2024/12,27万,结题,主持.

    [3] 国家自然科学基金青年基金,51905485,2020/01-2022/12,27万,结题,主持.

    [4] 国家自然科学基金联合基金项目,U20A20293,2021/01-2024/12,260万,结题,参与.

    [5] 国家自然科学基金重点项目,51935008,2020/01-2024/12,300万,结题,参与.

    [6] 国家自然科学基金面上项目,51975531,2020/01- 2023/12,60万,结题,参与.

    [7] 国家重点研发计划课题项目,2018YFB2000402,2019/07- 2022/06,309万,结题,参与.

    [8] 国际热核聚变实验堆(ITER)计划专项,2014GB121000,2014/01- 2018/08,518万,结题,参与.

    [9] 国家自然科学基金面上项目,51474083,2015/01-2018/12,91 万,结题,参与.

    省部级科研项目

    [1] 浙江省杰出青年科学基金,LR25E040001,2025/01-2027/12,80万,在研,主持.

    [2] 浙江省自然科学基金探索项目,LY21E050011,2021/01- 2023/12,10万,结题,主持.

    [3] 浙江省属高校基本科研业务费,青年英才专项,RF-A2022002,10万,结题优秀,主持.

    校级科研项目

    [1] 浙江工业大学前沿交叉科学研究院交叉科学研究基金课题,5万,结题,主持.

    横向项目

    [1] 杭州中能锅炉有限公司吸附塔委托设计,2023/05-2024/06,5万,结题,主持.

    [2] 半球谐振子力流变抛光技术研究,2020/09-2023/09,2 万,结题,主持.

    教改项目

    [1] 教育部产学合作协同育人项目,基于“互联网+”的《机械制造技术基础》教学内容改革与实践,5万,230803711261806,2024/01-2024/12,结题,参与.

    [2] 教育部产学合作协同育人项目,数字化新媒体背景下的复合型涉外人才培养模式研究,3万,230806021234833,2023/07-2024/06,结题,参与.

    [3] 教育部产学合作协同育人项目,产教融合背景下机械学科创新创业培养模式研究,5万,220607004222317,2022/07-2023/06,结题,主持.

    [4] 浙江工业大学研究生教学改革项目-重点项目,研究生的国际化培养模式创新,2万,2022202,2023/01-2024/12,结题,主持.


  • 科研成果

    发表论文

    [1] Hongyu Chen, Binbin Hong, Binghai Lyu*, Yunxiao Han, Te Zhu*, Xingzhong Cao, Qiu Xu, Pengqi Chen, Chang Chen, Laima Luo*, Yucheng Wu. Liquid film shearing polishing: a new method for irradiation resistance modification of tungsten materials used in fusion reactors[J]. Tungsten, 2026, https://doi.org/10.1007/s42864-026-00379-8.

    [2] Hongyu Chen, Letian Yang, Yujie Yang, Yunxiao Han*, Jiahuan Wang*, Wei Hang, Jiannan He, Huan Qi*, Binghai Lyu. Research on high surface quality polishing and corrosion resistance of Ti-6Al-4V alloy based on liquid film shear effect[J]. Powder Technology, 2026, 476: 122400.

    [3] Hongyu Chen, Hongbing Wan, Yujie Yang, Binghai Lyu*, Te Zhu*, Peng Zhang, Xingzhong Cao, Qiu Xu, Wei Hang*. Research on high-quality and low-damage liquid film shearing polishing of 4H-SiC and its surface/subsurface damage evolution[J]. Applied Surface Science, 2026, 720: 165117.

    [4] Pengqi Chen*, Chengyang Huang, Jiarui Su, Dang Xu, Hongyu Chen*, Xinyuan Shen*, Jigui Cheng. Temperature difference-induced surface tension gradients enable high densification of W-30Cu composites via ultrafast high-temperature sintering[J]. Journal of Materials Research and Technology, 2025, 39: 862-872.

    [5] Hongyu Chen, Binbin Hong, Maoxi Wu, Lin Wang, Binghai Lyu*, Yang Yang*, Yulong Yao, Chang Chen, Pengqi Chen, Tufa Habtamu Beri, Tianchen Zhao. A novel method of liquid film shearing polishing for achieving high-quality and low-damage polycrystalline tungsten[J]. Journal of Manufacturing Processes, 2025, 149: 165-178.

    [6] Hongyu Chen, Hongbing Wan, Binbin Hong, Wei Hang, Te Zhu*, Peng Zhang, Xingzhong Cao, Qiu Xu, Rong Wang, Xuefeng Han, Binghai Lyu*. A novel liquid film shearing polishing technique for silicon carbide and its processing damage mechanisms[J]. Applied Surface Science, 2025, 688: 162317. ESI 高被引论文

    [7] Hong-yu CHEN, Lin WANG, Feng PENG, Meng-meng SHEN, Wei HANG*, Tufa Habtamu BERI, Hui-bin ZHANG*, Jun ZHAO, Yun-xiao HAN, Bing-hai LYU. Efficient chemical mechanical polishing of W promoted by Fenton-like reaction between Cu2+ and H2O2[J]. Transactions of Nonferrous Metals Society of China, 2025, 35: 257-270ESI 高被引论文

    [8] Binbin Hong, Yiyang Chen, Hongyu Chen*, Te Zhu, Peng Zhang, Xingzhong Cao, Xiaoyu Zhao*, Laima Luo, Pengqi Chen*, Haifeng Li, Binghai. Lyu. Liquid film shearing polishing for high quality and low damage tungsten surface: Process optimization, removal mechanism, and processing defects[J]. International Journal of Refractory Metals and Hard Materials, 2025, 131: 107189.

    [9] Lin Wang, Binbin Hong, Hongyu Chen*, Huan Qi*, Jianguo Zhang, Wei Hang, Yunxiao Han, Jiahuan Wang, Kun Ren, Binghai Lyu. Enhancing tungsten machinability via laser pretreatment for abrasive particles-based shear rheological polishing[J]. Powder Technology, 2025, 455: 120758. ESI 高被引论文

    [10] Hongyu Chen, Zhengchao Wu, Binbin Hong, Wei Hang*, Peng Zhang, Xingzhong Cao*, Qiu Xu, Pengqi Chen, Heng Chen, Julong Yuan, Binghai Lyu, Hua-Tay Lin*. Study on the affecting factors of material removal mechanism and damage behavior of shear rheological polishing of single crystal silicon carbide[J]. Journal of Manufacturing Processes, 2024, 112: 225-237. ESI 高被引论文

    [11] Lin Wang, Maoxi Wu, Hongyu Chen*, Wei Hang, Xu Wang, Yunxiao Han, Heng Chen, Pengqi Chen*, Tufa Habtamu Beri, Laima Luo, Binghai Lyu*. Damage evolution and plastic deformation mechanism of passivation layer during shear rheological polishing of polycrystalline tungsten[J]. Journal of Materials Research and Technology, 2024, 28: 1584-1596.

    [12] Hongyu Chen, Lin Wang, Feng Peng, Qiu Xu*, Yaoxu Xiong, Shijun Zhao*, Kazutoshi Tokunaga, Zhenggang Wu, Yi Ma, Pengqi Chen, Laima Luo, Yucheng Wu*. Hydrogen retention and affecting factors in rolled tungsten: Thermal desorption spectra and molecular dynamics simulations[J]International Journal of Hydrogen Energy, 2023, 48(78): 30522-30531.

    [13] Pengqi Chen, Dang Xu, Chengyang Huang, Jian Yang, Yunxiao Tai, Tao Hong, Jigui Cheng*, Hongyu Chen*. Multi-factor coupled failure mechanism of W-Cu functionally graded material under thermal shock service[J]. Journal of Materials Research and Technology, 2023, 27: 5082-5092.

    [14] Jun Zhao*, Jiangyu Ge, Andrei Khudoley, Hongyu Chen*. Numerical and experimental investigation on the material removal profile during polishing of inner surfaces using an abrasive rotating jet[J]. Tribology International, 2023, 191: 109125.

    [15] Hongyu Chen*, Qiu Xu, Jiahuan Wang, Peng Li, Julong Yuan, Binghai Lyu, Jinhu Wang, Kazutoshi Tokunaga, Gang Yao, Laima Luo*, Yucheng Wu. Effect of surface quality on hydrogen/helium irradiation behavior in tungsten[J]. Nuclear Engineering and Technology, 2022, 54: 1947-1953. ESI 高被引论文

    [16] Gang Yao, Hong-Yu Chen1, Zhi-Hao Zhao, Lai-Ma Luo*, Yong Ma, Ji-Gui Cheng*, Xiang Zan, Qiu Xu, Yu-Cheng Wu. The superior thermal stability and irradiation resistance capacities of tungsten composites synthesized by simple second-phase particle component modulation[J]. Journal of Nuclear Materials, 2022, 561: 153522.

    [17] Hong-Yu Chen, Yu-Fen Zhou, Meng-Yao Xu, Lai-Ma Luo*, Qiu Xu, Xiao-Yong Zhu, Yu-Cheng Wu*. The influence of different isochronal annealing temperature on helium ion irradiation damage of W-Nb composites [J]. Fusion Engineering and Design, 2020, 159: 111857.

    [18] 陈泓谕, 袁巨龙*, 吕冰海, 罗来马, 吴玉程, 核聚变堆用钨表面超精密抛光的研究现状与趋势[J]. 机械工程学报, 2020, 56(21): 11-21.

    [19] Hong-Yu Chen, Lai-Ma Luo*, Xiang Zan, Qiu Xu, Xiao-Yong Zhu, Jia-Qin Liu, Ji-Gui Cheng, Yu-Cheng Wu*. Microstructure and helium irradiation performance of W–ZrC/Sc2O3 composites prepared spark plasma sintering [J]. International Journal of Refractory Metals and Hard Materials, 2018, 72: 373-379.

    [20] Hong-Yu Chen, Lai-Ma Luo*, Xiang Zan, Qiu Xu, Kazutoshi Tokunaga, Jia-Qin Liu, Xiao-Yong Zhu, Ji-Gui Cheng, Yu-Cheng Wu*. Thermal shock behavior of W–ZrC/Sc2O3 composites under two different transient events by electron and laser irradiation [J]. Journal of Nuclear Materials, 2018, 499: 248-255.

    [21] Hong-Yu Chen, Lai-Ma Luo*, Xiang Zan, Qiu Xu, Kazutoshi Tokunaga, Jia-Qin Liu, Dong-Guang Liu, Xiao-Yong Zhu, Ji-Gui Cheng, Yu-Cheng Wu*. Transient thermal shock behavior of W–Zr/Sc2O3 composites prepared via spark plasma sintering [J]. Fusion Engineering and Design, 2018, 126: 44-50.

    [22] Hong-Yu Chen, Lai-Ma Luo*, Xiang Zan, Qiu Xu, Xiao-Yong Zhu, Yu-Cheng Wu*. Investigation of W–B behavior during short transient events by laser irradiation [J]. Fusion Engineering and Design, 2017, 121: 130-136.

    [23] 陈泓谕,罗来马*,林锦山,昝祥,朱晓勇,吴玉程. W/Si复合材料的制备及抗激光束热冲击行为研究 [J]. 中国有色金属学报, 2017, 27(12): 2511-2517.

    [24] Hong-Yu Chen, Zhao-Cheng Wang, Lai-Ma Luo*, Liu Zhu, Zhi-Biao Tu, Yu-Cheng Wu. Effect of Ni content on the microstructure and properties of WC-Ni composites prepared by electroless plating and powder metallurgy [J]. Rare Metal Materials and Engineering, 2017, 46: 2820-2824.

    [25] Hongyu Chen, Laima Luo*, Jingbo Chen, Xiang Zan, Xiaoyong Zhu, Qiu Xu, Guangnan Luo, Junling Chen, Yucheng Wu*. Effects of zirconium element on the microstructure and deuterium retention of W–Zr/Sc2O3 composites [J]. Scientific Reports, 2016, 6: 32678.

    [26] Hong-Yu Chen, Lai-Ma Luo*, Jun Zhang, Xiang Zan, Xiao-Yong Zhu, Guang-Nan Luo, Yu-Cheng Wu*. Investigation on W/Fe diffusion bonding using Ti foil and Ti powder interlayer by SPS [J]. Journal of Nuclear Materials, 2015, 467: 566-571.

    [27] Hong-Yu Chen, Lai-Ma Luo*, Jing-Bo Chen, Ping Li, Guang-Nan Luo, Ji-Gui Cheng, Yu-Cheng Wu*. Effect of Sc2O3 particles on the microstructure of tungsten alloy prepared by spark plasma sintering [J]. Journal of Nuclear Materials, 2015, 462: 496-501.

    ......


链接

更新时间:2026.05.31
总访问量:10