学术论文: 期刊论文(*为通讯作者) [1]Lai Fuqiang,Qu Shengguan*, Duan Yong, Lewis Roger, Slatter Tom, Yin Lianmin, Li Xiaoqiang, Luo Huahuan, Sun Ge. The wear and fatigue behaviours of hollow head & sodium filled engine valve [J]. Tribology International, 2018. 128: 75-88. (SCI) [2]Lai Fuqiang,Qu Shengguan*, Lewis Roger, Slatter Tom, Fu Wenlan, Li Xiaoqiang. The influence of ultrasonic surface rolling on the fatigue and wear properties of 23-8N engine valve steel[J]. International Journal of Fatigue, 2019. 125: 299-313. (SCI) [3]Lai Fuqiang,Qu Shengguan*, Lewis Roger, Slatter Tom, Sun Ge, Zhang Tao, Li Xiaoqiang. Optimization of friction welding process parameters for 42Cr9Si2 hollow head and sodium filled engine valve and valve performance evaluation[J]. Materials, 2019. 12(7): 1123-1137. (SCI) [4]Lai Fuqiang,Qu Shengguan*, Yin Lianmin, Wang Guanghong, Yang Zhangxuan, Li Xiaoqiang. Design and operation of a new multifunctional wear apparatus for engine valve train components [J]. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, 2018. 232(3): 259-276. (SCI) [5]Lai Fuqiang,Qu Shengguan*, Qin Haidi, Lewis Roger, Slatter Tom, Li Xiaoqiang, Luo Huahuan. A comparison of wear behaviour of heat-resistant steel engine valves and TiAl engine valves[J]. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, 2019: 1-14. (SCI) [6] Qu Shengguan,Lai Fuqiang*, Wang Guanghong, Yuan Zhimin, Li Xiaoqiang, Guo Hui. Friction and wear behavior of 30CrMnSiA steel at elevated temperatures[J]. Journal of Materials Engineering and Performance, 2016. 25(4): 1407-1415. (SCI) [7] Zhang Yalong,Lai Fuqiang*, Qu Shengguan, Liu Haipeng, Jia Dongsheng, Du Shaofeng. Effect of ultrasonic surface rolling on microstructure and rolling contact fatigue behavior of 17Cr2Ni2MoVNb steel[J]. Surface and Coatings Technology, 2019. 366: 321-330. (SCI) [8] Zhang Yalong,Lai Fuqiang*, Qu Shengguan, Ji Vincent, Liu Haipeng, Li Xiaoqiang. Effect of shot peening on residual stress distribution and tribological behaviors of 17Cr2Ni2MoVNb steel[J]. Surface and Coatings Technology, 2020. 386: 125497. (SCI) [9] Ren Zhaojun,Lai Fuqiang*, Qu Shengguan, Zhang Yalong, Li Xiaoqiang, Yang Chao. Effect of ultrasonic surface rolling on surface layer properties and fretting wear properties of titanium alloy Ti5Al4Mo6V2Nb1Fe[J]. Surface and Coatings Technology, 2020. 389: 125612. (SCI) [10] Wang Guanghong, Qu Shengguan*,Lai Fuqiang, Li Xiaoqiang, Fu Zhiqiang, Yue Wen. Rolling contact fatigue and wear properties of 0.1C-3Cr-2W-V nitrided steel[J]. International Journal of Fatigue, 2015. 77: 105-114. (SCI) [11] Qu ShengGuan, Wang Guanghong*, Yang Zhangxuan,Lai Fuqiang, Xiong Zhihua, Hu Ke, Li Xiaoqiang. Microstructure and tribological properties of carburized 95W-3.5Ni-1.0Fe-0.5Co heavy alloy[J]. Rare Metals, 2019. 38(2): 165-172. (SCI) [12] Qu Shengguan, Hu Xiongfeng *, Lu Feng,LaiFuqiang, Liu Haipeng, Zhang Yalong, Li Xiaoqiang. Rolling contact fatigue properties of ultrasonic surface rolling treated 25CrNi2MoV steel under different lubricant viscosities[J]. International Journal of Fatigue, 2021. 125: 105970. (SCI) [13]秦海迪,张亚龙,刘海鹏,屈盛官*,赖福强*.喷丸对25CrNi2MoV钢滚动接触疲劳性能的影响[J].表面技术, 2020. 49(5): 222-229. (EI) [14]屈盛官,熊志华*,赖福强,王光宏,李小强,邓继韶.等离子堆焊Stellite合金高温摩擦磨损特性研究[J].摩擦学学报, 2016. 36(3): 362-370. (EI) [15]屈盛官*,袁志敏,赖福强,李小强,付志强.中重型车辆离合器摩擦副材料的高温磨损特性[J].中南大学学报(自然科学版), 2018. 49(5):1087-1094. (EI) [16]屈盛官*,尹联民,赖福强,肖传伟,李小强. 23-8N气门钢的高温摩擦磨损特性[J].华南理工大学学报, 2017. 45(12):78-84. (EI) [17]屈盛官*,杨章选,赖福强,和锐亮,付志强,李小强.渗铜量对铁基粉末冶金气门座圈材料微动磨损特性的影响[J].材料工程, 2018. 46(7):136-143. (EI) [18]屈盛官*,段勇,赖福强,杨超,李小强.不同重力环境下间隙铰链关节磨损分析[J].宇航学报, 2018. 39(4): 442-449. (EI) [19]马梦阳,李小强*,赖福强,胡雄风,魏涛,屈盛官.表面超声滚压加工对配气机构凸轮轴材料滚动接触疲劳性能的影响.中南大学学报(自然科学版) 2020. 51(9):2430-2441. (EI) 专利: 部分授权国家发明专利 [1]第2发明人,一种气门高温疲劳试验机[P].中国专利: ZL 201510957036.3, 2018-09-14. [2].第2发明人,一种气门旋转弯曲疲劳试验机[P].中国专利: ZL 201610192926.4, 2018-06-19. [3].第3发明人,一种手动液压叉车[P].中国专利: ZL 201610393520.2, 2018-07-10. [4]第3发明人,一种气门校准设备及气门校准方法[P].中国专利: ZL 201710220753.7, 2018-10-09. [5]第3发明人,一种气门-气门导管摩擦副的磨损测试装置及测试方法[P].中国专利: ZL 201710228083.3, 2019-05-14. [6]第3发明人,一种气门-气门座圈摩擦副磨损试验方法及装置[P].中国专利ZL 201610304377.5, 2018-09-14. |