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胡坤宏

發布者:化工系發布時間:2025-12-08瀏覽次數:127

   稱: 

聯系電話:0551-62158385

電子郵箱:hukunhong@163.com; chemhu@hfuu.edu.cn 

研究團隊(實驗室/平臺/中心):

材料安全與保護科研團隊、高端裝備關鍵摩擦副安徽省重點實驗室

主要研究方向:

機械摩擦學、潤滑材料、聚合物復合材料、礦物基材料、催化材料

個人簡歷:

胡坤宏,安徽繁昌人,博士、教授,科研處處長,中國機械工程學會摩擦學分會理事,安徽省領軍人才,安徽省學術和技術帶頭人后備人選,安徽省杰出青年基金項目負責人,安徽省教學名師、教壇新秀,合肥市專業技術拔尖人才。長期從事機械、材料、化工、環境等交叉學科的教學和科學研究工作,獲安徽省教學成果獎一等獎2項、二等獎2項;先后主持完成3項國家自然科學基金、安徽省杰出青年基金、安徽省重點研究與開發計劃等項目,第一或通訊作者論文50余篇,其中摩擦學領域著名期刊Tribology International、Friction、Tribology Letters、Wear論文15篇,參與出版英文專著2部,第一發明人專利22件(轉讓8件),獲第十六屆安徽青年科技獎、省科學技術獎二等獎3項、非金屬礦科學技術獎一等獎2項。

部分代表性學術論文(*為通訊作者)

[1] Hengyang Liu (研究生), Yong Xu, Enzhu Hu, Kunhong Hu*, Synthesis and tribological properties of WS2/MoS2 micro-nano composite lubricant, Tribology International, 2025, 204: 110506. (1TOP)

[2] Chonglong Zhong, Kunhong Hu*, Yong Xu, Enzhu Hu, Xianguo Hu. Lubrication antagonism mechanism of nano-MoS2 and soot particles in ester base oil, Friction, 2024, 12(12): 2692-2706. (1TOP)

[3] Zhixiang Li, Kunhong Hu*, Yong Xu, Enzhu Hu, Xianguo Hu. Dispersion and tribological properties of nano-MoS2/sericite particles in di-n-butyl adipate synthesized by their own catalysis, Tribology International, 2022, 174:107760. (1TOP)

[4] Lei Wang, Bin Shi, Enzhu Hu, Kunhong Hu*, Xianguo Hu. Reuse of spent bleaching clay for supporting MoS2 nanoparticles as a lubricating filler in ABS plastics. Tribology International, 2019, 131: 415-423. (1TOP)

[5] Ziyan Lu, Zhenzhen Cao, Enzhu Hu, Kunhong Hu*, Xianguo Hu. Preparation and tribological properties of WS2 and WS2/TiO2 nanoparticles. Tribology International, 2019, 130: 308-316. (1TOP)

[6] K. H. Hu*, Y. Xu, E. Z. Hu, J. H. Guo, X. G. Hu. Rolling friction performance and functional conversion from lubrication to photo catalysis of hollow spherical nano-MoS2/nano-TiO2, Tribology International, 2016, 104: 131–139. (1TOP)

[7] Yong Xu, Enzhu Hu, Kunhong Hu*, Yufu Xu, Xianguo Hu. Formation of an adsorption film of MoS2 nanoparticles and dioctyl sebacate on a steel surface for alleviating friction and wear. Tribology International, 2015, 92: 172–183. (1TOP)

[8] Z. Y. Xu, Y. Xu, K. H. Hu*, Y. F. Xu, X. G. Hu. Formation and tribological properties of hollow sphere-like nano-MoS2 precipitated in TiO2 particles. Tribology International, 2015, 81: 139–148. (1TOP)

[9] K. H. Hu, M. Liu, Q. J. Wang, Y. F. Xu, S. Schraube, X. G. Hu, Tribological properties of molybdenum disulfide nanosheets by monolayer restacking process as additive in liquid paraffin, Tribology International, 2009, 42(1): 33–39. (1TOP)

[10] K. H. Hu, J. Wang, S. Schraube, Y. F. Xu, X. G. Hu, R. Stengler. Tribological properties of MoS2 nano-balls as filler in plastic layer of three-layer self-lubrication bearing materials, Wear, 2009, 266 (11-12): 1198–1207.

[11] Miao, Y., Zhong, C., Li, Z. Xu, Y., Hu E., Hu K. Loss and Recovery of Nano-MoS2 Lubricity in Carbon Soot Contaminated Polyalphaolefin. Tribology Letters, 120 (2023).

[12] Z. Y. Xu, K. H. Hu*, C. L. Han, X. G. Hu, Y. F. Xu. Morphological Influence of Molybdenum Disulfide on the Tribological Properties of Rapeseed Oil, Tribology Letters, 2013, 49: 513–524.

[13] K. H. Hu, X. G. Hu, J. Wang, Y. F. Xu, C. L. Han. Tribological properties of MoS2 with different morphologies in high-density polyethylene. Tribology Letters, 2012, 47: 79–90.

[14] Kun Hong Hu, Xian Guo Hu, Yu Fu Xu, Fei Huang, Jun Sheng Liu, The effect of morphology on the tribological properties of MoS2 in liquid paraffin, Tribology Letters, (2010) 40:155–165.

[15] K. H. Hu, F. Huang, X. G. Hu, Y. F. Xu, Y, Q, Zhou. Synergistic effect of nano-MoS2 and anatase nano-TiO2 on the lubrication properties of MoS2/TiO2 nano-clusters, Tribology Letters, 2011, 43: 77–87.

[16] K.H. Hu, Z. Liu, F. Huang, X. G. Hu, C. L. Han, Synthesis and photocatalytic properties of nano-MoS2/kaolin composite, Chemical Engineering Journal, 162 (2010) 836–843.

[17] Yueru Liu, Kunhong Hu*, Enzhu Hu, Jianhua Guo, Chengliang Han, Xianguo Hu, Double hollow MoS2 nano-spheres: Synthesis, tribological properties, and functional conversion from lubrication to photocatalysis. Applied Surface Science, 2017, 392, 1144-1152.

[18] K. H. Hu, X. G. Hu, X. J. Sun, Morphological effect of MoS2 nanoparticles on catalytic oxidation and vacuum lubrication, Applied Surface Science 256 (2010) 2517–2523.

[19] Hu Kun-hong, ZHAO Di-fang, LIU Jun-sheng. Synthesis and application of nano-MoS2/bentonite composite for the removal of organic dye. Trans. Nonferrous Met. Soc. China, 2012, 22(10): 2484?2490.

[20] Gong Junjie, Li Zhixiang, Lin Qingqing, Hu Kunhong*. Tribological performance of di-n-octyl sebacate synthesized with carboxylated nano-MoS2/sericite as catalyst. Industrial Lubrication and Tribology, 2024, 76(9): 1048-1057.

[21] Hu K., Miao Y., Lu, Z. Preparation and tribological performance of MoS2 nanoparticles supported on fly ash microparticles, Industrial Lubrication and Tribology, 2023, 75: 51-59.

[22] Li Z, Han S, Wang L, Hu K*. Tribological properties of trimethylolpropane oleate synthesized through esterification reaction with nano-MoS2 catalysts of different shapes, Industrial Lubrication and Tribology, 2023, 75: 246-254.

[23] Bin Shi, Jian Hua Guo, Xing An Cao, En Zhu Hu, Kun Hong Hu*. Effects of carbon soot from the combustion of diesel fuels on the tribological properties of lubricating oil and diesel fuels, Industrial Lubrication and Tribology, 2018, 70(3): 532-537.

[24] X. A. Cao, G. Q. Shao, K. H. Hu*. Tribological modification of high-density polyethylene by using carbon soot from diesel combustion, Industrial Lubrication and Tribology, 2016, 68(5): 603–610.

[25] Yating Xia, Zhixiang Li, Qingqing Lin, Kunhong Hu*. Tribological Properties of Polypropylene Adipate Base Oil Containing In Situ Catalytically Dispersed Spherical Nano-MoS2/Sericite. Tribology Online, 2024,19(3): 157-166.

[26] Hengyang Liu, Wanyuan Li, Yong Xu, Enzhu Hu, Guangchao Qin, Kunhong Hu*, Tribological performance of Cu-modified large interlayer spacing 1 T/2H-MoS2 nanoparticles in soot-contaminated polyalphaolefin, Journal of Industrial and Engineering Chemistry, 2025, https://doi.org/10.1016/j.jiec.2025.03.050. (In Press)

[27] Wang K, Xu Y, Zhong H, Hu EZ, Hu KH*. MoS2 micro/nano structure: preparation and tribological properties as additives in biodegradable polymer and ester oil, Surface Topography: Metrology and Properties, 2025, 13: 015002.

[28] 胡坤宏,徐勇,徐玉福,胡獻國. 不同形態的二硫化鉬潤滑劑在離子液體中的摩擦學性能. 摩擦學學報,201535(2): 167-175.

[29] 胡坤宏, S.Schraube, 徐玉福, 胡獻國, R.Stengler. 二硫化鉬改性聚甲醛自潤滑復合材料的微觀摩擦學性能研究, 摩擦學學報,2010, 30(1), 38-45.

學術著作章節

[1] Kunhong Hu, Xianguo Hu*, Yufu Xu, Xiaojun Sun, Yang Jiang. “Tribology of MoS2-Based Nanocomposites”, Chapter 3, In “Tribology of Nanocomposites” Edited by J. P. Davim, ISBN: 978-3-642-33881-6, Springer Berlin Heidelberg, Invited Book Chapter. 2013

[2] K. H. Hu, X. G. Hu*, R. Stengler, “Tribology of Composite Materials with Inorganic Lubricants”, Chapter 3, In “Tribology of Composite Materials”, Edited by J. P. Davim, ISBN: 978-1-61668-319-1, Nova Science Publishers, Inc., Invited Book Chapter. 2010

發明專利

[1] 胡坤宏, 石永杰, 原治坤, 胡恩柱, 王磊. 一種利用二硫化鉬納米微粒作催化及潤滑作用的酯類潤滑油的合成方法, ZL201910224142.9

[2] 胡坤宏, 蔡威盟, 郭建華, 胡恩柱, 陸紫嫣. 一種二硫化鉬粉煤灰復合潤滑劑的制備方法, ZL201910223428.5

[3] 胡坤宏, 周娜娜, 石永杰, 秦廣超, 胡恩柱. 一種具有降解功能的高吸水性易結團貓砂及其制備方法, ZL201911033338.6

[4] 胡坤宏, 陳敏, 原治坤, 胡恩柱, 李芹. 一種十二鉬磷雜多酸銨制備二硫化鉬微粒的方法, ZL201910224140.X.

[5] 胡坤宏, 秦廣超, 石永杰, 胡恩柱, 曹真真. 一種二硫化鉬/廢白土復合物、制備方法及應用, ZL201910224133.X

[6] 胡坤宏, 周娜娜, 陳敏, 胡恩柱, 王磊. 一種含有二硫化鉬/廢白土復合物潤滑劑分散體系的酯類潤滑油的合成方法, ZL201910224141.4.

[7] 胡坤宏,王磊,郭建華,史彬,胡恩柱,秦廣超. 一種廢白土/二硫化鉬/ABS塑料高耐磨自潤滑復合材料及其制備方法,ZL201810198620.9.

[8] 胡坤宏, 曹真真, 陸紫嫣, 胡恩柱, 郭建華. 一種產物形態可控的制備二硫化鉬納米微粒的方法, 專利號:ZL201710303157.5.

[9] 胡坤, 史彬, 郭建華, 陸紫嫣, 胡恩柱, 江文, 徐勇. 一種實現二硫化鉬納米微粒在潤滑油中達到溶液級分散的方法, 專利號:ZL201610719321.6

[10] 胡坤宏, 晁先泉, 史彬, 陳浩, 姜進洪, 胡恩柱. 一種二硫化鎢/二硫化鉬/蒙脫土復合物及其制備方法,專利號:ZL201510416871.6.

[11] 胡坤宏, 胡恩柱, 秦廣超, 趙楠楠, 王柳. 發明名稱:一種二硫化鎢/二硫化鉬復合物及其制備方法, 專利號:ZL201510416794.4.

[12] 胡坤宏, 劉月如, 史彬, 胡恩柱, 王柳: 發明名稱: 一種二硫化鎢/凹凸棒復合物及其制備方法, 專利號:ZL201510416850.4.

[13] 胡坤宏, 胡恩柱, 韓成良, 趙楠楠, 胡藝紋: 發明名稱: 一種二硫化鎢/二氧化鈦復合物及其制備方法, 專利號:ZL201510416849.1.

[14] 胡坤宏, 曹興安, 胡恩柱, 邵國泉. 發明名稱: 一種抑制碳煙污染導致的酯類潤滑油潤滑性能下降的方法, 專利號:ZL201510416795.9.

[15] 胡坤宏, 秦廣超, 徐勇, 曹興安, 劉密密. 發明名稱: 一種二硫化鉬/二氧化鈦復合物及其制備方法, 專利號:ZL201410369695.0.

主要科研項目:

[1] 持:安徽省高校優秀科研創新團隊(材料安全與保護科研團隊)(批準號:2022AH010096),經費200萬,在研

[2] 主持:省領軍人才計劃項目,經費50萬,在研

[3] 主持:二硫化鉬納米潤滑劑的原位催化分散行為及其與發動機碳煙之間的潤滑拮抗機制(批準號:52075144),2020年國家自然科學基金面上項目,經費58萬,結題

[4] 主持:二硫化鉬復合潤滑劑的摩擦誘導功能轉變機制及其綠色設計(批準號:51375139),2013年國家自然科學基金面上項目,經費82萬,結題

[5] 主持:二硫化鉬的形態尺寸效應及其在潤滑材料設計中的應用研究(批準號:50905054),2009年國家自然科學基金青年基金項目,經費20萬,結題

[6] 主持:二硫化鉬復合物改性金屬-塑料滑動軸承的摩擦學性能及其綠色設計(批準號:1508085J10)2015年安徽省杰出青年基金項目,經費30萬,結題

[7] 主持:高活性長效抗菌MoS2/TiO2改性醫用包裝膜的研發及產業化應用(批準號:202104a05020065),安徽省重點研究與開發項目,經費50萬,結題

[8] 主持:廢白土負載過渡金屬二元硫化物的微觀協同潤滑機制及其工業化應用(批準號:KJ2018ZD053). 教育廳高校自然科學研究重大項目,經費30萬,結題

[9] 主持:滑動軸承的自潤滑設計與延壽技術(無編號),2014年安徽省教育廳高校優秀青年人才支持計劃項目,經費15萬,結題

[10] 主持,橫向課題: 改性醫用包裝膜的研發及產業化應用,經費15萬,在研

獲獎情況:

[1] 2024非金屬礦科學技術獎一等獎(排名第1

[2] 2017年獲安徽省科學技術三等獎(排名第1

[3] 2013年獲安徽省科學技術二等獎(排名第2

[4] 2015年第十六屆安徽青年科技獎(排名第1

[5] 2022年廣西科學技術獎二等獎(排名第5

[6] 2020年廣西科學技術獎二等獎(排名第8

[7] 2019非金屬礦科學技術獎一等獎(排名第10

[8] 2019非金屬礦科學技術獎二等獎(排名第6