代表性论文与会议报告:
1、 Zhang Yanbin, Li Changhe, Jia Dongzhou, et al. Experimental evaluation of the lubrication performance of MoS2 /CNT nanofluid for minimal quantity lubrication in Ni-based alloy grinding[J]. International Journal of Machine Tools & Manufacture, 2015, 99:19-33. (IF 6.039, Top 期刊, JCR 1区, ESI高被引论文)
2、 Zhang Yanbin, Li Changhe, Ji Heju, et al. Analysis of grinding mechanics and improved predictive force model based on material-removal and plastic-stacking mechanisms[J]. International Journal of Machine Tools & Manufacture, 2017, 122: 81-97. (IF 6.039, Top 期刊, JCR 1区, ESI高被引论文)
3、 Zhang Yanbin, Li Changhe, Jia Dongzhou, et al. Experimental evaluation of MoS2 nanoparticles in jet MQL grinding with different types of vegetable oil as base oil[J].Journal of Cleaner Production, 2015, 87(1):930-940. (IF 6.359, JCR 1区, ESI高被引论文)
4、 Zhang Yanbin, Li Changhe, Yang Min, et al. Experimental evaluation of cooling performance by friction coefficient and specific friction energy in nanofluid minimum quantity lubrication grinding with different types of vegetable oil[J]. Journal of Cleaner Production, 2016, 139:685-705. (IF 6.359, JCR 1区)
5、 Zhang Yanbin, Li Changhe, Jia Dongzhou, et al. Experimental study on the effect of nanoparticle concentration on the lubricating property of nanofluids for MQL grinding of Ni-based alloy[J]. Journal of Materials Processing Technology, 2016, 232:100-115. (IF 4.178, JCR 1区, ESI 前3%)
6、 Zhang Yanbin, Li Changhe, Zhang Qiang, et al. Improvement of useful flow rate of grinding fluid with simulation schemes[J]. International Journal of Advanced Manufacturing Technology, 2016, 84(9-12):2113-2126. (IF 2.496, JCR 2区)
7、 Zhang Yanbin, Li Changhe, Yang Min, et al. Modeling and Simulation of Nanofluid Minimum Quantity Lubrication Surface Grinding Thermal Stress[J]. Open Mechanical Engineering Journal, 2015, 9(1):761-768. (EI收录)
8、 张彦彬, 李长河, 贾东洲,等. MoS2/CNTs混合纳米流体微量润滑磨削加工表面质量试验评价[J]. 机械工程学报, 2018(1). 161-170 (EI收录)
9、 Zhang Yanbin, Li Changhe, Yang Min, et al. Analysis of single-grain interference mechanics based on material removal and plastic stacking mechanisms in nanofluid minimum quantity lubrication grinding [J]. Procedia Cirp. 2018. 116-121 (CIRP 国际会议论文)
10、 张彦彬, 李长河, 贾东洲,等. 纳米粒子射流微量润滑磨削镍基合金润滑性能实验评价[J]. 组合机床与自动化加工技术, 2015(6):113-117.