发表论文情况: 发表SCI、EI、中文核心、会议等学术论文54篇(其中第一作者或通讯作者25篇),授权发明专利1项。 [1] Qiang Gong, Ming Cai*, Yadong Gong, Minghui Chen, Tao Zhu, Qianqian Liu. Grinding surface and subsurface stress load of nickel-based single crystal superalloy DD5[J]. Precision Engineering, 2024, 88: 354-366. (SCI中科院二区) [2] Qiang Gong, Ming Cai*, Yadong Gong, Tao Zhu, Xingjun Gao, Minglei Zhang. Grinding subsurface damage mechanism of nickel-based single crystal superalloy based on stress-strain[J]. Precision Engineering, 2024, 86: 1-15. (SCI中科院二区) [3] Qiang Gong, Ming Cai*, Yadong Gong, Minglei Zhang, Tao Zhu, Minghui Chen. A study on the grinding subsurface metamorphic layer influencing factors of nickel-based single crystal superalloy[J]. International Journal of Advanced Manufacturing Technology, 2023, 129: 2577-2589. (SCI中科院三区) [4] Ming Cai, Qiang Gong, Xingjun Gao, Yadong Gong, Minglei Zhang, Tao Zhu, Minghui Chen. Plastic deformation mechanism of grinding subsurface of nickel-based single-crystal superalloy[J]. International Journal of Advanced Manufacturing Technology, 2023, 128: 4961-4979. (SCI中科院三区) [5] Minghui Chen, Ming Cai*, Yadong Gong, Tao Zhu, Qiang Gong, Yu Liu. Study on the removal mechanism in multi-abrasive micro-grinding of nickel-based superalloy[J]. International Journal of Advanced Manufacturing Technology, 2023, 128: 2199-2220. (SCI中科院三区) [6] Tao Zhu, Ming Cai*, Yadong Gong, Xingjun Gao, Ning Yu, Qiang Gong. Research progress of eco-friendly grinding technology for aviation nickel-based superalloys[J]. International Journal of Advanced Manufacturing Technology, 2023, 126: 2863-2886. (SCI中科院三区) [7] Tao Zhu, Ming Cai*, Yadong Gong, Xingjun Gao, Ning Yu, Qiang Gong. Study on the chip formation in grinding of nickel‑based single‑crystal superalloy DD5[J]. International Journal of Advanced Manufacturing Technology, 2023, 125: 5781-5798. (SCI中科院三区) [8] Ming Cai, Tao Zhu, Yadong Gong, Xingjun Gao, Qiang Gong, Ning Yu. Study on the influence of rhenium and grain boundaries on the surface quality of Ni‑based superalloys[J]. International Journal of Advanced Manufacturing Technology, 2023, 125: 2363-2378. (SCI中科院三区) [9] Tao Zhu, Ming Cai*, Yadong Gong, Xingjun Gao, Ning Yu, Xiang Li. Study on chip formation in grinding of nickel‑based polycrystalline superalloy GH4169[J]. International Journal of Advanced Manufacturing Technology, 2022, 121: 1135-1148. (SCI中科院三区) [10] Ming Cai, Tao Zhu, Xingjun Gao, Yongfei Yan, Ning Yu, Lei Zeng. Study on machining performance in grinding of Ni-base single crystal superalloy DD5[J]. International Journal of Advanced Manufacturing Technology, 2022, 120: 7657-7671. (SCI中科院三区) [11] Cai Ming, Gong Yadong, Sun Yao, Qu Shuoshuo, Liu Yin, Yang Yuying. Experimental study on grinding surface properties of nickel-based single crystal superalloy DD5[J]. International Journal of Advanced Manufacturing Technology, 2019, 101: 71-85. (SCI中科院三区) [12] 蔡明, 巩亚东, 屈硕硕, 杨玉莹. 镍基单晶高温合金磨削表面质量及亚表面微观组织试验[J]. 东北大学学报(自然科学版), 2019, 40(3): 386-391. (EI) [13] 蔡明, 巩亚东, 冯耀利, 刘瑶佳. 镍基高温合金磨削表面工艺性能试验研究[J]. 东北大学学报(自然科学版), 2019, 40(2): 234-238. (EI) [14] 蔡明, 巩亚东, 于宁, 高奇. 铝合金6061微尺度铣削的铣削力仿真与实验研究[J]. 东北大学学报(自然科学版), 2018, 39(1): 76-81. (EI) [15] 蔡明, 巩亚东, 于宁, 高奇. 单晶DD98微尺度铣削表面质量试验研究[J]. 中国机械工程, 2017, 28(11): 1261-1265. (EI) [16] Ming Cai, Yadong Gong, Yao Sun, Shuoshuo Qu, Yuying Yang. Experimental study on the grinding anisotropy of nickel-based single crystal superalloy[C]. The 21st International Symposium on Advances in Abrasive Technology, 2018, Toronto, Canada. (EI) [17] Ming Cai, Yadong Gong, Qiang Li, Yao Sun, Yin Liu. Experimental study on grinding surface quality of nickel-based single crystal superalloy[C]. The 20th International Symposium on Advances in Abrasive Technology, 2017, Okinawa, Japan. (EI) [18] 于贵华, 朱涛, 蔡明*, 安志欣, 王成静, 罗书宝. 镍基单晶高温合金DD5磨削成屑机理研究[J]. 金刚石与磨料磨具工程, 2023, 43(6): 760-771. (中文核心) [19] 孙永杰, 朱涛, 蔡明*, 张宇轩, 樊宸瑞, 安志欣. 镍基单晶高温合金磨削润滑方式对表面完整性的影响[J]. 金刚石与磨料磨具工程, 2022, 42(2): 201-207. (中文核心) [20] 蔡明, 巩亚东, 高奇, 温雪龙. 单晶铝微尺度铣削表面质量实验研究[J]. 机械设计与制造, 2018, (2): 85-87. (中文核心) [21] 于宁, 王艳红, 蔡明*, 田中大. 基于HSMM的机械故障演化预测诊断研究[J]. 组合机床与自动化加工技术, 2018, (1): 56-59. (中文核心) [22] 蔡明, 朱涛, 高兴军, 鲍金奇. 镍基高温合金磨削加工技术研究现状[J]. 辽宁石油化工大学学报, 2023, 43(3): 60-68. (科技核心) [23] Ming Cai, Yadong Gong, Weijian Zhang. Study on material properties and grinding surface quality of nickel-based single crystal superalloy DD5[C]. The 16th European Automotive Congress, 2019, Minsk, Belarus. (国际会议) [24] 蔡明, 巩亚东, 孙瑶. 镍基单晶高温合金磨削各向异性试验研究[C]. 第十四届机械工程全国博士生学术论坛, 2018, 芜湖, 中国. (国内会议) [25] 蔡明, 巩亚东, 李强, 尹国强. 单晶DD98磨削表面质量试验研究[C]. 第十九届中国磨粒技术学术会议, 2017, 哈尔滨, 中国. (国内会议) [26] Xu Zhao, Yadong Gong, Ming Cai, Bing Han. Numerical and experimental analysis of material removal and surface defect mechanism in scratch tests of high volume fraction SiCp/Al composites[J]. Materials, 2020, 13(3): 796. (SCI中科院三区) [27] Li Qiang, Gong Yadong, Cai Ming, Liu Mingjun. Research on surface integrity in milling Inconel718 superalloy[J]. International Journal of Advanced Manufacturing Technology, 2017, 92: 1449-1463. (SCI中科院三区) [28] Yunguang Zhou, Yadong Gong, Ming Cai, Zongxiao Zhu, Qi Gao, Xuelong Wen. Study on surface quality and subsurface recrystallization of nickel-based single-crystal superalloy in micro-grinding[J]. International Journal of Advanced Manufacturing Technology, 2017, 90: 1749-1768. (SCI中科院三区) [29] Xu Zhao, Yadong Gong, Ming Cai, Bing Han. Comparative multiscale investigations of material removal behaviors of SiCp/5083Al, SiC ceramic and 5083Al alloy by single scratch tests[J]. Materials Research Express, 2020, 7(10): 106514. (SCI中科院四区) [30] Qi Gao, Po Jin, Ming Cai. Research on sub-surface recrystallization of single crystal nickel-based superalloy in micro-milling[J]. Journal of Mechanical Science and Technology, 2019, 33(7): 3467-3472. (SCI中科院四区) [31] Shuoshuo Qu, Yadong Gong, Yuying Yang, Ming Cai, Hualong Xie, Huan Zhang. Grinding characteristics and removal mechanism of 2.5D-needled Cf/SiC composites[J]. Ceramics International, 2019, 45(17): 21608-21617. (SCI中科院一区) [32] Shuoshuo Qu, Yadong Gong, Yuying Yang, Ming Cai, Yao Sun. Surface topography and roughness of silicon carbide ceramic matrix composites[J]. Ceramics International, 2018, 44(12): 14742-14753. (SCI中科院一区) [33] Yao Sun, Yadong Gong, Yin Liu, Ming Cai, Xiaoteng Ma, Pengfei Li. Experimental investigation on effects of machining parameters on the performance of Ti-6Al-4V micro rotary parts fabricated by LS-WEDT[J]. Archives of Civil and Mechanical Engineering, 2018, 18(2): 385-400. (SCI中科院二区) [34] Yao Sun, Yadong Gong, Jun Cheng, Ming Cai. Experimental investigation on carbon steel micro-rod machining by LS-WEDT[J]. Materials and Manufacturing Processes, 2018, 33(6): 597-605. (SCI中科院二区) [35] Yao Sun, Yadong Gong, Guoqiang Yin, Ming Cai, Pengfei Li. Experimental study on surface quality and machinability of Ti-6Al-4V rotated parts fabricated by low-speed wire electrical discharge turning[J]. International Journal of Advanced Manufacturing Technology, 2018, 95: 2601-2611. (SCI中科院三区) [36] Xu Zhao, Yadong Gong, Guiqiang Liang, Ming Cai, Bing Han. Face grinding surface quality of high volume fraction SiCp/Al composite materials[J]. Chinese Journal of Mechanical Engineering, 2021, 34(1): 3. (SCI中科院三区) [37] Yuying Yang, Yadong Gong, Shuoshuo Qu, Hualong Xie, Ming Cai, Yunchao Xu. Densification, mechanical behaviors, and machining characteristics of 316L stainless steel in hybrid additive/subtractive manufacturing[J]. International Journal of Advanced Manufacturing Technology, 2020, 107: 177-189. (SCI中科院三区) [38] Pengfei Li, Yadong Gong, Chunyou Liang, Yuying Yang, Ming Cai. Effect of post-heat treatment on residual stress and tensile strength of hybrid additive and subtractive manufacturing[J]. International Journal of Advanced Manufacturing Technology, 2019, 103: 2579-2592. (SCI中科院三区) [39] Liu Yin, Gong Yadong, Zhang Huan, Sun Yao, Cai Ming. Experimental investigations into grinding characteristics of high entropy alloys (HEAs) using micro grinding[J]. International Journal of Advanced Manufacturing Technology, 2018, 96: 4477-4499. (SCI中科院三区) [40] Yuying Yang, Yadong Gong, Shuoshuo Qu, Yulong Rong, Yao Sun, Ming Cai. Densification, surface morphology, microstructure and mechanical properties of 316L fabricated by hybrid manufacturing[J]. International Journal of Advanced Manufacturing Technology, 2018, 97: 2687-2696. (SCI中科院三区) [41] Gong Yadong, Liu Yin, Sun Yao, Wen Xuelong, Li Qiang, Qu Shuoshuo, Cai Ming. Experimental and emulational investigations into grinding characteristics of Zr-based bulk metallic glass (BMG) using microgrinding[J]. International Journal of Advanced Manufacturing Technology, 2018, 97: 3431-3451. (SCI中科院三区) [42] 巩亚东, 张伟健, 蔡明, 周显新. 镍基单晶高温合金磨削变质层工艺试验研究[J]. 东北大学学报(自然科学版), 2020, 41(6): 846-851. (EI) [43] 王艳红, 于宁, 蔡明, 邢大伟. 动态制造系统生产计划与调度协同优化研究[J]. 中国机械工程, 2018, 29(22): 2768-2771. (EI) [44] 杨玉莹, 巩亚东, 屈硕硕, 蔡明. 增/减材复合加工316L宏观形貌和残余应力试验[J]. 东北大学学报(自然科学版), 2020, 41(3): 380-386. (EI) [45] 屈硕硕, 巩亚东, 杨玉莹, 蔡明. 单向碳纤维增强陶瓷基复合材料磨削表面质量研究[J]. 东北大学学报(自然科学版), 2019, 40(9): 1310-1315. (EI) [46] Yadong Gong, Yao Sun, Ming Cai, Xiaoteng Ma, Yongkang Ma. An experimental study for fabricating microelectrodes using the LS-WEDT method[C]. The 20th International Symposium on Advances in Abrasive Technology, 2017, Okinawa, Japan. (EI) [47] 高奇, 蔡明. 高速微尺度铣削单晶铝表面粗糙度试验研究[J]. 组合机床与自动化加工技术, 2016, (9): 13-16. (中文核心) [48] 高奇, 巩亚东, 蔡明. 不同晶粒度材料微铣削力的仿真与试验[J]. 纳米技术与精密工程, 2017, 15(2): 145-150. (中文核心) [49] 高奇, 巩亚东, 蔡明. 不同晶粒度AL1060微铣削力及表面质量试验[J]. 湖南科技大学学报(自然科学版), 2017, 32(4): 32-37. (中文核心) [50] 高奇, 巩亚东, 蔡明, 周云光. 单晶硅微铣削塑性去除表面质量实验研究[J]. 制造技术与机床, 2016, (6): 135-138. (中文核心) [51] 孙杨, 巩亚东, 周云光, 蔡明. 单晶材料微磨削表面粗糙度与磨削力实验研究[J]. 机械设计与制造, 2018, (4): 122-124, 128. (中文核心) [52] Sun Yao, Gong Yadong, Cai Ming. Experimental study on micro-rod machined by low speed wire electrical discharge turning[C]. 第十四届机械工程全国博士生学术论坛, 2018, 芜湖, 中国. (国内会议) [53] 李强, 巩亚东, 蔡明, 尹国强. DD5单晶材料铣削加工各向异性研究[C]. 第十九届中国磨粒技术学术会议, 2017, 哈尔滨, 中国. (国内会议) [54] 高奇, 巩亚东, 周云光, 蔡明. 不同晶粒度AL1060微铣削力及表面质量试验研究[C]. 第十八届中国磨粒技术学术会议, 2015, 湘潭, 中国. (国内会议) [55] 马廉洁, 于爱兵, 蔡明, 陈小辉, 李琛, 张祖辉. ZrO2/CopO4复合材料的钻削加工方法: 中国, ZL201310464148.6[P]. 2015-07-08. (发明专利) |