代表性论文、专利、软著及著作 | (一)代表性论文: 发表SCI期刊论文56篇(第一/通讯作者35篇),EI期刊论文17篇(第一/通讯作者10篇)。代表性论文如下: [1] Rao
Xiang, Sheng Chenxing, Guo Zhiwei*, Yuan Chengqing. A
review of online condition monitoring and maintenance strategy for
cylinder liner-piston rings of diesel engines [J]. Mechanical
Systems and Signal Processing, 2022,165: 108385 (SCI) [2] Guo
Zhiwei*, Huang Qiren, Xie Xin, Yuan Chengqing. Effects of
spherical-platform texture parameters on the tribological
performance of water-lubricated bearings [J]. Wear,
2021, 477: 203863 (SCI) [3]
RaoXiang, Sheng Chenxing, Guo Zhiwei*, Zhang Xuecheng, Yin
Huabing, Xu Chang, Yuan Chengqing*. Effects of textured cylinder
liner piston ring on performances of diesel engine under hot
engine tests [J]. Renewable and Sustainable Energy Reviews,
2021,146: 111193 (SCI) [4] Miao
Chenwei, Guo Zhiwei*, Yuan Chengqing. Tribological behavior
of co-textured cylinder liner-piston ring during running-in [J].Friction, 2021, Doi.org/10.1007/s40544-021-0499-z
(SCI) [5] Wang
Yaobo, Guo Zhiwei*, Bai Xiuqin, Yuan Chengqing. Effect of
weld defects on the mechanical properties of stainless-steel
weldments on large cruise ship [J]. Ocean Engineering,
2021, 235: 109385 (SCI) [6] He
Yang, Guo Zhiwei*, Wu Zumin, Yuan Chengqing. Effect of
polyester fiber orientation on the tribological properties of
ultrahigh molecular weight polyethylene composites for water
lubrication [J]. Tribology International, 2021, 158:
106935. (SCI) [7] Huang
Qiren, Guo Zhiwei*, Wu Zumin, Yuan Chengqing. Insight into
the tribological performance of polyurethane composites under high
temperature water lubrication [J]. Tribology International,
2021, 155: 106784. (SCI) [8] Yang
Zhenxiang, Guo Zhiwei*, Yang Zongrong, Wang Chaobao, Yuan
Chengqing. Study on tribological properties of a novel composite
by filling microcapsules into UHMWPE matrix for water lubrication
[J]. Tribology International, 2021, 153: 106629.
(SCI) [9] Lin
Yudong, Guo Zhiwei*, Yuan Chengqing. Effects of solid
lubricants on the tribological behavior of steel-backed UHMWPE
fabric composites [J]. Journal of Applied Polymer Science,2021, 139(8): 51674. (SCI) [10] Liang
Xiang, Guo Zhiwei*, Li Zhe, Qiu Yikun, Wang Zhikang, Yuan
Chengqing. A novel finding of tribological and mechanical linking
to micro-convex texture on hydrophilic composites surface under
water-lubricating conditions [J]. Macromolecular Materials
and Engineering, 2021, 202100844. (SCI) [11] Liang
Xiang, Guo Zhiwei*, Tian Jun, Yuan Chengqing. Effect of
modified glass fiber on tribological performance of
water-lubricated bearing [J]. Polymer Testing, 2020,
81: 106153. (SCI) [12] Guo
Zhiwei, Xie Xin, Yuan Chengqing. Study on influence of micro
convex textures on tribological performances of UHMWPE material
under the water-lubricated conditions [J]. Wear,
2019, 426-427: 1327-1335. (SCI) [13] Hu
Dong, Guo Zhiwei*, Xie Xin, Yuan Chengqing. Effect of
spherical-convex surface texture on tribological performance of
water-lubricated bearing [J]. Tribology International,
2019, 134: 341-351. (SCI) [14] Chang
Tie, Guo Zhiwei*, Yuan Chengqing. Study on influence of
Koch snowflake surface texture on tribological performance for
marine water-lubricated bearings [J]. Tribology
International, 2019, 129: 29-37. (SCI) [15] Yang
Zongrong, Guo Zhiwei*, Yuan Chengqing. Effects of MoS2microencapsulation on the tribological properties of a composite
material in a water-lubricated condition [J]. Wear,
2019, 432-433: 102919. (SCI) [16] Yang
Zongrong, Guo Zhiwei*, Yuan Chengqing. Tribological
behavior of polymer composites functionalized with various
microcapsule core materials [J]. Wear, 2019,
426-427: 853-861. (SCI) [17] Guo
Zhiwei, Yuan Chengqing *, Bai Xiuqin, Yan Xinping.
Experimental study on wear performance and oil film
characteristics of surface textured cylinder liner in marine
diesel engine [J]. Chinese Journal of Mechanical
Engineering, 2018, 31: 52. (SCI) [18] Guo
Zhiwei, Yuan Chengqing*, Liu Aixue, Jiang Song. Study on
tribological properties of novel biomimetic material for
water-lubricated stern tube bearing [J]. Wear, 2017,
376-377: 911–919. (SCI) [19] Guo
Zhiwei, Yuan Chengqing*, Yan Xinping, Peng Zhongxiao. 3D
Surface characteristics of wear particles generated from
lubricated regular concave cylinder liners [J]. Tribology
Letters, 2014, 55: 131-142. (SCI) [20] Guo
Zhiwei, Yuan Chengqing*, Liu Peng, Peng Zhongxiao, Yan
Xinping. Study on influence of cylinder liner surface texture on
lubrication performance for cylinder liner-piston ring components
[J]. Tribology Letters, 2013, 51(1): 9-23. (SCI) [21] 林羽东,郭智威*,袁成清.钢背UHMWPE纤维织物复合材料的摩擦学性能分析[J].中国表面工程,
2021, 34(1): 25-34. (EI) [22] 杨振祥,郭智威*,袁成清.石墨微胶囊改性超高分子量聚乙烯舰船水润滑尾轴承复合材料的摩擦学性能[J].兵工学报,
2020, 41(11): 2281-2291. (EI) [23] 缪晨炜,郭智威*,袁成清,许昌,盛晨.缸套-活塞环织构化耦合机理及减摩性能研究[J].表面技术,
2020, 49(3): 124-133. (EI) [24] 崔旨桃,郭智威*,谢心,袁成清.尼龙自润滑性与表面织构协同作用对HDPE基水润滑轴承摩擦磨损性能的影响[J].摩擦学学报,
2019, 39(4): 407-417. (EI) [25] 缪晨炜,郭智威*,袁成清.仿生多尺度沟槽织构对表面摩擦性能的影响[J].中国表面工程,
2019, 32(1): 22-30. (EI) [26]江仁埔,郭智威*,饶响,袁成清.表面织构对缸套-活塞环摩擦学性能的影响[J].内燃机学报,
2018 , 36(5): 471-479. (EI) [27] 杨宗榕,郭智威*,袁成清.仿生微胶囊复合水润滑轴承材料的摩擦性能研究[J].摩擦学学报,
2018, 38(1) : 28-36. (EI) [28] 苗嘉智,郭智威*,袁成清.表面织构对内燃机缸套-活塞环系统摩擦性能的影响[J].摩擦学学报,
2017, 37(4) : 465-471. (EI) (二)获授权专利: 授权专利26件,其中发明专利17件(第一发明人10件): [1] 郭智威,杜昌,盛晨兴,袁成清.一种用于模拟LNG燃料柴油机环境的缸套-活塞环试验平台.中国,中国发明专利,
ZL202110381907.7, 授权公告日:
2022-03-04. [2] 郭智威,林羽东,黄齐韧,袁成清.一种基于纤维织物改性的自润滑轴承及其制作方法.中国,中国发明专利,
ZL202011117801.8, 授权公告日:
2021-12-03. [3] 郭智威,苗子华,白秀琴,袁成清.一种基于超声检测技术的船舶材料空蚀试验实时检测系统及方法.中国,中国发明专利,
ZL202010551948.1, 授权公告日:
2021-07-06. [4] 郭智威,何阳,吴祖旻,袁成清.一种纤维定向分布增强高分子水润滑轴承基材热压制备方法及热压成型模具,中国,中国发明专利,
ZL201911235626.X, 授权公告日:
2021-02-19. [5] 郭智威,刘众志,袁成清.一种适用于豪华邮轮舱底水系统的防空吸装置.中国,中国发明专利,
ZL202010283481.7, 授权公告日:
2021-02-19. [6] 郭智威,苗子华,袁成清.一种大型邮轮供水系统及离心泵防气蚀装置.中国,中国发明专利,
ZL201911226432.3, 授权公告日:
2020-10-30. [7] 郭智威,杨超振,麻凯,饶响,缪晨炜.一种可提升综合性能的气缸套表面织构及其设计方法.中国,中国发明专利,
ZL201810307398.1, 授权公告日:
2020-01-14. [8] 郭智威,饶响,江仁埔,袁成清,盛晨兴.柴油机缸套-活塞环摩擦磨损与润滑油膜测量的试验平台.中国,中国发明专利,
ZL201710519552.7, 授权公告日:
2019-10-25. [9] 郭智威,袁成清,白秀琴,姜松,陶威,严新平.一种仿生微胶囊自润滑结构的复合高分子材料及其制备方法,中国,中国发明专利,
ZL201610458718.4, 授权公告日:
2019-03-08. [10] 郭智威,江仁埔,谢斌,张静静,李文杰,袁成清.基于γ射线的柴油机缸套活塞之间油膜测厚模拟测试平台,
2018.1.12, 中国,中国发明专利,
ZL201510713785.1. 授权公告日:
2018-01-12. (三)参与编著: [1]袁成清,董从林,郭智威.丁腈橡胶水润滑轴承材料磨损机理与寿命评估[M].武汉理工大学出版社,
2019. [2] 严新平,白秀琴,袁成清.船舶摩擦学[M].武汉理工大学出版社,2016.(负责第四章内容的撰写,参与第2、9章内容的撰写) [3]中国机械工程学会.
2014-2015-机械工程学科发展报告(摩擦学)
[M]. 中国科学技术出版社,
2016. (参与其中专题报告“海洋装备领域摩擦学发展研究”的撰写) |