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含硫、氮杂环化合物摩擦学特性及其与结构相关性研究 被引量:2

Structure-activity correlation for heterocyclic compounds containing nitrogen and sulphur on their tribological performance
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摘要 用四球机和HQ -1环块实验机考察了 2种具有相同原子组成、相似环结构的同分异构体 ( 2 氨基苯并噻唑 ,2 巯基苯并咪唑 )的摩擦磨损性能 ;用X射线光电子能谱检测了添加剂中和磨斑表面上元素的电子结合能 ,以确定 2种杂环化合物的摩擦学作用机理 .结果表明 :2种杂环化合物具有相似的摩擦学作用机制 ;且无论是减摩抗磨性能还是承载能力方面 ,2 氨基苯并噻唑均优于 2 巯基苯并咪唑 .同时还用分子轨道理论和氢键作用讨论了杂环化合物的结构对其摩擦学性能的影响 .图 4,表 4,参 The friction and wear performance of heterocyclic compounds (2-aminobenzothiazole and 2-mercaptobenzimidazole), which have the same element composition and similar cyclic structure except for the different atom position, added to liquid paraffin were evaluated using four-ball machine and HQ-1 block-on-ring tribotester. X-ray photoelectron spectroscopy (XPS) was used to examine the binding energy of elements on the rubbed surface and in additives in order to determine the action mechanism of heterocyclic compounds during rubbing. The results show that the two heterocyclic compounds possess the similar tribological action mechanism, and 2-aminobenzothiazole is superior to 2-mercaptobenzimidazole, either on the antiwear and friction reducing performance or on load-carrying capacity. At the same time, the effect of heterocyclic compound structure on tribological properties is discussed according the theory of molecular orbits and hydrogen bond action. 4figs.,4tabs., 11refs.
出处 《湘潭矿业学院学报》 2001年第3期55-58,共4页 Journal of Xiangtan Mining Institute
基金 国家自然科学基金资助项目 (50 0 0 50 1 8)
关键词 杂环化合物 添加剂 承载能力 氢健作用 结构相关性 润滑 含硫 heterocyclic compounds additives antiwear load-carrying capacity hydrogen bond action
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参考文献1

  • 1蒋硕廷 丁有骏 等.有机化学[M].北京:北京大学出版社,1996..

同被引文献17

  • 1任天辉,薛群基.含氮杂环化合物及其衍生物用作多功能润滑油添加剂的研究发展现状[J].摩擦学学报,1994,14(4):370-381. 被引量:91
  • 2Ling Zhu,Qin Li,Jiayan Li,Xiangdong Liu,Jian Meng,Xueqiang Cao.Selective Synthesis of Mesoporous and Nanorod CeVO4 without Template[J]. Journal of Nanoparticle Research . 2007 (2)
  • 3Yonezawa T,Onoue S,Kimizuka N.Preparation of highly positively charged silver nanoballs and their stability. Langmuir . 2000
  • 4Kim Y W,Chung K,Kim N S,Hwang D H,Cho W O.Synergistic lubricating effect of several ashless dithiocarbamates with Mo-donor additives. Tribology International . 2007
  • 5Wang J,Xua Y H,Hojamberdieva M,Peng J H,Zhu G Q.Na2EDTA-assisted hydrothermal synthesis and luminescent properties of YVO4:Eu3+ with different morphologies in a wide pH range. Materials Science and Engineering . 2009
  • 6Sun L,Zhou JF,Zhang ZJ,et al.4</sub>)<sub>3</sub>PMo<sub>12</sub>O<sub>40</sub> nanoparticles&amp;sid=Wear&amp;aufirst=Sun L');&#xA; ">Synthesis and tribological behavior of surface modified (NH<sub>4</sub>)<sub>3</sub>PMo<sub>12</sub>O<sub>40</sub> nanoparticles. Wear . 2004
  • 7Zhang J Y,Liu W M,Xue Q J.The effect of molecular structure of heterocyclic compounds containing N, O and S on their tribological performance. Wear . 1999
  • 8Ammar S,Helfen A,Jouini N, et al.Magnetic properties of ultrafine cobalt ferrite particles synthesized by hydrolysis in a polyol medium. Journal of Materials Chemistry . 2001
  • 9Shen G Q,,Zheng Z,Wan Y,et al.Synergistic lubricating effects of borate ester with heterocyclic compound. Wear . 2000
  • 10Tan Y Q,Huang W J,Wang X Y.Molecular orbital indexes criteria for friction modifiers in boundary lubrication. Tribology International . 2002

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