工作经历
现任山东省高校机械设计与制造重点实验室主任,青岛理工大学党委常委、副校长。[1]
研究方向
主要从事磨削与精密加工、高速超高速加工以及数字化制造等方面的研究工作。
完成科研项目
1.李长河,主要完成人,国家自然科学基金项目:砂轮约束磨粒喷射精密光整加工新工艺基础研究(项目编号:50475052),2005.1-2007.12,理论分析与实验研究。
2.李长河,主要完成人,高等学校博士学科点专项科研基金:砂轮约束微细磨粒喷射加工创新工艺理论研究(项目编号:20040145001),2005.1-2007.12,理论分析与实验研究。
3.李长河,主要完成人,教育部科学技术研究重点项目:超高速数控点磨削机床关键技术研究(项目编号:104190),2004.6-2006.6,实验机床研制。
4.李长河,参加人,辽宁省自然基金项目:纳米磨削、高速高效磨削及其相关技术研究(项目编号:20052161),2005.1-2006.12,实验研究。
5.李长河,主持人,国家自然科学基金项目:磨粒排布优化凸出精确可控自由型面截面砂轮制造方法(项目编号:50875138),2009.1-2011.12。
6.李长河,主持人,中国博士后科学基金项目:磨粒排布优化和凸出精确可控的自由型面截面砂轮制造新工艺基础研究(项目编号:20080431234),2008.8-2010.8。
7.李长河,子课题负责人,国家重点基础研究发展计划(973计划)项目:多场耦合强作用下超高速加工的切削学行为(项目编号:2009CB724401),2009.1-2013.12,超高速切削磨削材料去除机理与实验研究。
8.李长河,主持人,山东省自然科学基金重点项目:砂轮分层数字化制造工艺及装备基础研究(项目编号:Z2008F11),2008.10-2010.10。
9.李长河,主持人,机械制造系统工程国家重点实验室项目:超高速磨削多场强耦合材料去除机理(项目编号:20080542),2008,6-2010,6。
10.李长河,子课题负责人,国家科技重大专项项目:高速磨削、切削工艺研究-高速切削工艺(项目编号:2009ZX04014-043),2009,1-2013,12。
11.李长河,主持人,山东省自然科学基金重点项目:高熔点金属电弧喷涂快速模具制造工艺(项目编号:ZR2009FZ007),2009.12-2012.12。
承担科研项目
1.李长河,主持人,国家自然科学基金项目:纳米粒子射流微量润滑强化换热机理及砂轮/工件界面摩擦学行为(项目编号:51175276),65万元,2012.1-2015.12。
2.李长河,主持人,青岛市基础研究计划项目重点项目:纳米粒子射流微液滴微量润滑机理及砂轮/工件界面摩擦学行为(14-2-4-18-jch),30万元,2014.09-2016.09。
3.李长河,执行负责人,青岛市科技发展计划项目:基于五自由度机器人大型覆盖件高熔点金属电弧喷涂快速制模技术(项目编号:12-1-4-4-(1)-jch),8万元,2011.12-2014.12,理论分析与建模。
专利授权
(1)授权发明专利
获得授权专利情况(获得授权发明专利21项,授权发明专利明细如下:序号专利名称授权号位次授权时间类别1砂轮数控制造装置ZL200710193878.11/22010,1,20发明专利2可便携式风光集成充电器ZL200810165888.91/32011,8,10发明专利3一种纳米流体磨削工艺ZL20091020760611/42011,9,14发明专利4脆硬材料磨削机床ZL20101019985911/12012,2,22发明专利5轴承滚道可控磨削设备及磨削工艺ZL20101023925401/12012,5,23发明专利6纳米氧化锆陶瓷材料微切工艺及设备ZL20091026380731/32012,5,23发明专利7一种纳米粒子高速铣削镍基合金工艺及纳米切削液ZL20101016225791/22012,5,23发明专利8碳纳米管换热工质太阳能热水器ZL201110178914.31/32012,12,26发明专利9可坐起翻身移动多功能护理病床ZL201110195607.61/22013,01,02发明专利10纳米磨削工艺及纳米磨削液ZL201010004222.21/62013,02,06发明专利11带有粉碎和发电功能的地漏ZL201110186427.11/12013,03,20发明专利12自动加米淘米微电脑控制电饭煲ZL201110195606.12/22013,04,20发明专利13利用砂轮气流场在线检测砂轮磨损的方法和装置ZL201110294068.11/32013,05,08发明专利14高熔点金属模具型壳无内应力快速制造工艺与装备ZL201110376696.41/42013,06,12发明专利15纳米流体导热系数及对流换热系数测量装置ZL201110221334.81/42013,06,19发明专利16磨削液有效流量率及动压力的测量装置及方法ZL201210084224.61/32013,07,31发明专利17高熔点金属电弧喷涂模具快速制造装备ZL201210086159.01/32013,08,07发明专利18高熔点金属电弧喷涂智能制造系统ZL201110403558.01/32013,08,14发明专利19高熔点金属电弧喷涂陶瓷型母模的快速制造工艺与装备ZL201110394345.61/42013,08,14发明专利20纳米粒子射流微量润滑磨削润滑剂供给系统ZL201210153801.21/32014,03,12发明专利21纳米粒子射流微量润滑磨削三相流供给系统ZL201110221543.21/42014,03,12发明专利22采用钎焊麻花钻钻头的轴向力可控的外科骨钻ZL01310011247.91/22014,08,13发明专利23采用钎焊PCBN超硬材料钻头的轴向力可控的外科骨钻ZL201310010852.41/22014,08,13发明专利24采用磨粒钻头的轴向力可控的外科骨钻ZL201310011010.01/22014,08,13发明专利
论文
1. Zhang, Y., Li, C., Ji, H., Yang, X., Yang, M., & Jia, D., X Zhang, Li R and Wang J. Analysis of grinding mechanics and improved predictive force model based on material-removal and plastic-stacking mechanisms. International Journal of Machine Tools & Manufacture, 2017,122, 81-97.(ESI热点论文)
2. Yang, M., Li, C., Zhang, Y., Jia, D., Zhang, X., & Hou, Y., Li R and Wang J. Maximum undeformed equivalent chip thickness for ductile-brittle transition of zirconia ceramics under different lubrication conditions. International Journal of Machine Tools & Manufacture, 2017,122, 55-65.(ESI高被引论文)
3. Yanbin Zhang, *Changhe Li, Dongzhou Jia, Dongkun Zhang, Xiaowei Zhang. Experimental Evaluation of the Lubrication Performance of MoS2/CNT Nanofluid for Minimal Quantity Lubrication in Ni-based Alloy Grinding . International Journal of Machine Tools and Manufacture,2015,99(12):19-33.(ESI高被引论文)
4. Zhang YanBin, Li ChangHe*, Jia DongZhou, Zhang DongKun, Zhang XiaoWei. Experimental Evaluation of MoS2 Nanoparticles in Jet MQL Grinding with Different Types of Vegetable Oil as Base Oil. Journal of Cleaner Production,2015 87(1):930-940.(ESI高被引论文)
5. Yaogang Wang, Changhe Li*, Yanbin Zhang, Min Yang , Benkai Li, Dongzhou Jia, Yali Hou and Cong Mao. Experimental evaluation of the lubrication properties of the wheel/workpiece interface in MQL grinding using different types of vegetable oils. Journal of Cleaner Production,2016(127):487-499.(ESI高被引论文)
6. M Yang, C Li, Y Zhang, Y Wang, B Li, D Jia, Y Hou and R Li. Research on microscale skull grinding temperature field under different cooling conditions. Applied Thermal Engineering, 2017, 126(5): 525-537
7. Min Yang, Changhe Li, Yanbin Zhang, Yaogang Wang, Benkai Li, Yali Hou. Experimental research on microscale grinding temperature under different nanoparticle jet minimum quantity cooling. Materials & Manufacturing Processes, 2017, 32(6):589-597.
8. Zhang, Xianpeng, Li Changhe*, Zhang Yanbin, Wang Yaogang, Li Benkai, Yang Min, Guo Shuming,Liu Guotao, Zhang Naiqing. Lubricating property of MQL grinding of Al2O3/SiC mixed nanofluid with different particle sizes and microtopography analysis by cross-correlation. Precision Engineering,2017,47:532-545.
9. Yanbin Zhang, Changhe Li*, Min Yang, Dongzhou Jia, Yaogang Wang, Benkai Li, Yali Hou, Naiqing Zhang, Qidong Wu. Experimental evaluation of cooling performance by friction coefficient and specific friction energy in nanofluid minimum quantity lubrication grinding with different types of vegetable oil. Journal of Cleaner Production,2016,139:685-705.
10. Shuming Guo , Changhe Li*, Yanbin Zhang, Yaogang Wang, Benkai Li, Min Yang, Xianpeng Zhang,and Guotao Liu. Experimental evaluation of the lubrication performance of mixtures of castor oil with other vegetable oils in MQL grinding of nickel-based alloy. Journal of Cleaner Production,2016,140:1060-1076.
11. Yanbin Zhang, Changhe Li*, Dongzhou Jia, Benkai Li, Yaogang Wang, Min Yang, Yali Hou,Xiaowei Zhang. Experimental Research on Effect of Nanoparticle Concentration on Lubricating Property of Nanofluids MQL Grinding of Ni-based Alloy. Journal of Materials Processing Technology,2016,232:100–115.
12. Yaogang Wang, Changhe Li*, Yanbin Zhang, Benkai Li, Min Yang, Xianpeng Zhang, Shuming Guo and Guotao Liu. Experimental Evaluation of the Lubrication Properties of the Wheel/Workpiece Interface in MQL Grinding with Different Nanofluids. Tribology International,2016,(99):198–210.
13. Li Benkai, Li Changhe*, Zhang Yanbin, Wang Yaogang, Jia Dongzhou, Yang Min. Grinding temperature and energy ratio coefficient in MQL grinding of high-temperature nickel-base alloy by using different vegetable oils as base oil. Chinese Journal of Aeronautics,2016 29(4):1084–1095.
14. Yaogang Wang, Changhe Li*, Yanbin Zhang, Min Yang, Xianpeng Zhang, Naiqing Zhang, Jingjie Dai.Experimental evaluation on tribological performance of the wheel/workpiece interface in minimum quantity lubrication grinding with different concentrations of Al2O3 nanofluids. Journal of Cleaner Production,2017,142:3571-3583.
15. Zhang Dong Kun,Li ChangHe*,Jia DongZhou,Zhang YanBin,Zhang Xiao. Specific grinding energy and surface roughness of nanoparticle jet minimum quantity lubrication in grinding. Chinese Journal of Aeronautics,2015,28(2):570-581.
16. Yaogang Wang, Changhe Li*, Yanbin Zhang, Benkai Li, Min Yang, Xianpeng Zhang, Shuming Guo,Guotao Liu, Mingge Zhai. Comparative evaluation of the lubricating properties of vegetable-oil-based nanofluids between frictional test and grinding experiment. Journal of Manufacturing Processes ,2017,26: 94-104.
17. Dongzhou Jia, Changhe Li*, Yanbin Zhang, Dongkun Zhang and Xiaowei Zhang. Experimental Research on the Influence of the Jet Parameters of Minimum Quantity Lubrication on the Lubricating Property of Ni-based Alloy Grinding. The International Journal of Advanced Manufacturing Technology,2016,82(1-4):617-630.
18. Yanbin Zhang, Changhe Li, Qiang Zhang, Dongzhou Jia, Sheng Wang, Dongkun Zhang, Cong Mao.Improvement of useful flow rate of grinding fluid with simulation schemes. The International Journal of Advanced Manufacturing Technology,2016,84 (9-12):2113-2126.
19. Benkai Li,Changhe Li, Yanbin Zhang, Yaogang Wang, Min Yang, Dongzhou Jia, Naiqiong Zhang,Qingdong Wu. Effect of the physical properties of different vegetable oil-based nanofluids on MQLC grinding temperature of Ni-based alloy. The International Journal of Advanced Manufacturing Technology,2016:1-16.
20. Xianpeng Zhang, Changhe Li*, Yanbin Zhang, Dongzhou Jia, Benkai Li, Yaogang Wang, Min Yang Yali Hou and Xiaowei Zhang.Performances of Al2O3/SiC hybrid nanofluids in minimum-quantity lubrication grinding. The International Journal of Advanced Manufacturing Technology,2016,86(9):3427–3441.
21. Zhang Dong Kun,Li ChangHe*,Zhang YanBin,Jia DongZhou,Zhang Xiao Wei. Experimental research on the energy ratio coefficient and specific grinding energy in nanoparticle jet MQL grinding. The International Journal of Advanced Manufacturing Technology,2015,78(5-8):1275-1288.
22. Changhe Li*,Huayang Zhao,Hongliang Ma,Yali Hou,Yanbin Zhang,Min Yang,Xiaowei Zhang. Simulation Study on Effect of Cutting Parameters and Cooling Mode on Bone-drilling Temperature Field of Superhard Drill. The International Journal of Advanced Manufacturing Technology,2015,81(9):2027-2038.
23. Changhe Li*, Qiang Zhang, Sheng Wang, Dongzhou Jia, Dongkun Zhang, Yanbin Zhang, Xiaowei Zhang. Useful Fluid Flow and Flow Rate in Grinding: An Experimental Verification. The International Journal of Advanced Manufacturing Technology,2015,81(5):785-794.
24. Sheng Wang, Changhe Li*, Dongkun Zhang. Modeling the operation of a common grinding wheel with nanoparticle jet flow minimal quantity lubrication. International Journal of Advanced Manufacturing Technology,2014,74(5-8):835-850.
25. Li Changhe*, Zhang Xiaowei, Zhang Qiang. Modeling and simulation of useful fluid flow rate in grinding. International Journal of Advanced Manufacturing Technology,2014,75(9-12):1587-1604.
26. Changhe Li*,Dongkun Zhang,Dongzhou Jia,Sheng Wang,Yali Hou. Experimental Evaluation on Tribological Properties of Nano-particle Jet MQL Grinding. Int.J.Surface Science and Engineering,2015,9(2/3):159-173.
27. Dongzhou Jia ,Changhe Li* ,Dongkun Zhang. Experimental Verification of Nano-Particle Jet Minimum Quantity Lubrication Effectiveness in Grinding. Journal of Nanoparticle Research,2014,16(12):1-15.
28. Jia Dongzhou, Li Changhe*, Wang Sheng. Advances and Patents about Grinding Equipments with Nano-Particle Jet Minimum Quantity Lubrication. Recent Patents on Nanotechnology,2014,8(3):215-229.
参考资料:[2]
社会活动
中国机械工程学会生产工程学会青年科技委员会委员,中国机械工程学会磨粒加工委员会委员,中国机械工程学会光整加工委员会理事。
主讲课程
课程类型课程名称本科生课程《机械制造基础》《金属工艺学》《机械制造工艺学》《机械工程导论》《生产计划与管理》硕士生课程《先进制造技术》《磨削与精密加工理论与技术》《机械工程前沿》《机械科学与工程进展》
参考资料:[2]
获得荣誉
时间奖项全称具体奖项颁奖机构2015年第四届山东省优秀研究生指导教师[3]--2014年3月山东省高等学校教学名师--2013年9月山东省第八届发明创业奖二等奖-2012年12月山东省高校优秀科研成果奖一等奖山东省教育厅2011年青岛市四方区科技拔尖人才--2022年11月2022年度“高被引科学家”[4]--
人物评价
李长河教授的研究成果在中国中车等国内500多个智能制造企业应用,助力实施新旧动能转换重大工程,推动传统产业优化升级,在深入实施八大发展战略,做优做强做大“十强”产业等方面作出了突出贡献。(山东教育新闻网评)[5]
李长河教授及其团队的成果,打破了制造业对润滑液的过分依赖、消除了传统润滑技术对自然环境的污染、改善了工人的加工环境,形成了高效、低耗、环境友好、资源节约的低碳绿色清洁生产新工艺。研发了具有自主知识产权的微量润滑关键技术及装备,提升了我国精密制造的自主创新能力,引领了精密制造润滑剂供给改革潮流,大幅提高了国际竞争力。(青岛理工大学评)[6]
从事多年的理论技术探究,李长河对学术要求深刻严谨,对育人要求科学博爱。在三十年的从事授教、课题探究以及为人处世的经历中,李长河孜孜以求、不停探索的精神,给身边的学生以及团队成员树立了学习的榜样。面对科研生活,李长河勤奋、坚持、严谨,不断丰富和完善自己,使自己在学习和工作中不断为社会赋能。面对团队协作,李长河懂得相互成就,多与同行交流和学习,用方法赋能少走弯路,不断打造一个更优秀的自己。(青岛早报评)[7]
参考资料 7
- 现任领导 — 青岛理工大学
- 李长河 — 青岛理工大学机械与汽车工程学院
- 李长河 — 青岛理工大学 机械与汽车工程学院
- 青岛理工大学3位学者入选年度全球“高被引科学家”榜单 — 今日头条-大众网
- 青岛理工大学李长河教授获第十届“山东省优秀科技工作者”荣誉称号 — 百家号
- 【独家】走近山东省十大优秀发明家——李长河教授 — 微信公众平台
- 他用“绿色药方”破解世界难题 — 青岛新闻网