期刊論文:
[1] Xuyang Jin, Xinming Li*, Linqing Bai, Feng Guo, Junbin Gao, Gerhard Poll, Effect of contact geometry on lubricant replenishment in grease lubricated rolling contacts, Tribology International, 200, 2024, 110077
[2] Jin X, Li X*, Bai L, et al. Effects of contact path on lubricant distribution and EHL film formation. Friction, 2024, https://doi.org/10.26599/FRICT.2025.9441026
[3] Jin, X., Li, X*., Liu, Y., Gao, J., and Bai, L. Experimental study of lubricant distribution and lubrication enhancement induced by ball bearing cage. ASME. J. Tribol. July 2024; 146(7): 074103. https://doi.org/10.1115/1.4065035
[4] Wei Xinqi, Li Xinming*. Early failure analysis of automobile generator bearing. Engineering Failure Analysis 159 (2024) 108124
[5] Jin, X., Li, X., Chen, Q., Yang, P., Guo, F., and Jiang, N. Observation of Grease Film Behavior in Sliding-Rolling Concentrated Contacts. ASME. J. Tribol. January 2022; 144(1): 011602.
[6] Li Xinming, Guo Feng, Gerhard Poll, Fei Yang, Yang Ping. Grease film evolution in rolling elastohydrodynamic lubrication contacts. Friction, 2021, 9(1): 179-190.
[7] Li X M, Zhou G Y, Guo F, Wang X B, Zhang J J. Enhanced lubricant replenishment by angled surface velocities in EHL contacts. Tribology International, 2020, 145: 106132.
[8] Li X M, Guo F, Wong P L, Zhao Y. Regulation of lubricant supply by wettability gradient in rolling EHL contacts[J]. Tribology International, 2018, 120: 565-574.
[9] Li X. M., Guo F, Wang S. P., Liu C. L., Wang W. Z. Behaviours of a micro droplet in an EHL contact. Friction, 2016, 4(4): 359–368.
[10] Li X. M., Guo F, Wong P. L. Shear rate and pressure effects on boundary slippage in high stressed contacts. Tribology International, 2013, Vol 59: 147-153.
[11] Li X M, Guo F., Wong P. L. Study of Boundary Slippage Using Movement of a Post-Impact EHL Dimple Under Conditions of Pure Sliding and Zero
rainment Velocity. Tribology Letters, 2011, Vol 43: 159-165.
[12] Li X M, Guo F, Wong P L. Movement of entrapped oil under pure rolling conditions. Tribology Letters, 2011, Vol 43 (2): 129-137.
會議報告:
[1] 栗心明. 光學技術在滾動軸承潤滑研究中的應用. 第十二屆中國軸承論壇暨智能裝備轉(zhuǎn)動與支承-國際產(chǎn)學研用合作會議. 2024年11月1-4日,河南 洛陽. (邀請報告)
[2] LI Xinming. Ball Bearing Cage Structure on Lubricant Distribution, Lubrication and Friction. 7th Asia International Conference on Tribology (ASIATRIB2024) & 9th China International Conference on Tribology (CICT2024). Tianjin, China, from September 14 to 18, 2024. (邀請報告)
[3] 栗心明. 滾動軸承內(nèi)部潤滑劑流動與油膜測量研究. 第十七屆全國摩擦耐磨減摩材料及先進制造技術論壇. 2024年5月17日-20日,山東濟南. (大會特邀報告)
[4] LI Xinming. Influence of Contact Geometry on Grease Lubrication Behaviors. 2nd Sino-German Symposium on Advanced Lubrication Technology. 6th-7th December 2023, Karlsruhe, Germany. (Invited)
[5] 栗心明. 滾動軸承脂潤滑機理研究. 東部地區(qū)摩擦學學術論壇. 2023年10月13日-15日,江蘇徐州. (邀請報告)
[6] 栗心明. 滾動軸承脂潤滑回填機制與成膜機理研究. 2023年第十五屆全國摩擦學大會暨全國青年摩擦學學術會議. 2023年04月27 -27日,甘肅·蘭州. (邀請報告)
[7] 栗心明. 考慮滾動軸承特征因素的潤滑劑回填機制. 2021年東部地區(qū)摩擦學學術論壇. 2021年05月08日-10日,廣東深圳. (邀請報告)
[8] 栗心明. 滾動接觸脂潤滑油膜演化過程及機理分析. 2018年全國青年摩擦學學術會議, 2018年4月27日-29日,福建福州. (大會特邀報告)
[9] Li X M. Observation of grease film evolution in rolling point contacts. FVA Bearing World-International Conference. 6-7 March 2018, Germany, Kaiserslautern.
[10] 栗心明. 滾動接觸脂潤滑油膜衰減研究. 2016年東部地區(qū)摩擦學論壇暨第八屆生物摩擦學與醫(yī)學內(nèi)植物工程學術研討會. 2016年11月25日-27日,江蘇無錫. (邀請報告)