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在综述渗硫技术的发展历程和分类的基础上,重点介绍了低温离子渗硫的工艺流程和离子渗硫层的形成机理,总结归纳了低温离子渗硫工艺的技术、经济优势和社会环保效益,概述了低温离子渗硫技术在各类典型的滚动件、滑动件和重载零件上的应用现状以及低温离子渗硫工业化生产设备的研究情况。指出低温离子渗硫技术未来将继续向绿色环保、简单高效等方向发展。

Based on the summary of the development history and classification of sulfurizing technology,this paper introduces the process flow of LTIS (Low-temperature ion sulfurizing)technology and the formation mechanism of ion sulfurized layer in detail.Then the technological,economic advantages and social environmental benefits of LTIS technology are pointed out.The industrial application status of LTIS technology in various typical rolling,sli-ding and heavy duty parts,and the industrial facilities for LTIS technology are also reviewed briefly.In the future,the LTIS technology will become more environmental friendly,simple and efficient.

参考文献

[1] Wang Hai-Dou;Zhuang Da-Ming;Wang Kun-Lin;Liu Jia-Jun.Comparative investigation on tribological properties of ion-sulfuration layers under dry friction[J].Tribology letters,20021(1):55-61.
[2] 张宁;庄大明;王燕华;刘家浚;方晓东;官明喜.低温离子渗硫层的结构和减摩性能[J].材料研究学报,2000(1):61-65.
[3] 张宁;庄大明;王燕华;刘家浚;方晓东;官明喜.低温离子渗硫层的摩擦学性能研究[J].磨擦学学报,1999(4):348-353.
[4] 张宁;庄大明;刘家浚.离子渗硫层的抗擦伤性能及耐磨性研究[J].金属热处理学报,2000(4):41-45.
[5] 马国政;徐滨士;王海斗;司洪娟.表面纳米化预处理对1Cr18Ni9Ti不锈钢渗硫层摩擦学性能的影响[J].机械工程学报,2011(11):75-81.
[6] Ma Shi-ning;HU Chun-hua;LI Xin;QIU Ji.Tribology properties of composite layer of CrMoCu alloy cast iron by combined treatment of ion nitrocarburizing and sulphurizing[J].中国有色金属学会会刊(英文版),2004(z1):315-318.
[7] 石万凯;李宁;韩振华.低温离子渗硫FeS涂层的摩擦学性能研究[J].重庆理工大学学报(自然科学版),2015(9):48-52.
[8] Zhuang Da-Ming;Liu Jia-Jun;Fang Xiao-Dong;Guang Ming-Xi;Cui Yue;Liu You-Rong.Microstructure and tribological properties of sulphide coating produced by ion sulphuration[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,19992(2):799-805.
[9] Hai-Dou Wang;Da-Ming Zhuang;Kun-Lin Wang;Jia-Jun Liu.Anti-scuffing properties of ion sulfide layers on three hard steels[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,200211/12(11/12):1207-1213.
[10] 杨明.20CrMo低温离子渗硫层干摩擦磨损性能研究[J].科技视界,2015(14):299-300.
[11] 乔玉林;胡春华;赵玉强;杨善林.连续加载条件下纳米Al2O3/FeS固体润滑复合涂层的摩擦学性能[J].摩擦学学报,2010(6):561-566.
[12] 胡春华;杨春燕;刘庆存;孙志杰;马世宁;乔玉林.纳米Al2O3-Fe3O4/FeS固体润滑复合层减摩润滑机理[J].材料热处理学报,2013(6):130-135.
[13] 张平;曾庆强;蔡志海;李奇.激光淬火渗硫复合层的抗高温摩擦磨损性能[J].装甲兵工程学院学报,2010(1):71-73,82.
[14] Tian, Bin;Yue, Wen;Wang, Chengbiao;Liu, Jiajun.Surface properties of W-implanted TiN coatings post-treated by low temperature ion sulfurization[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2015Oct.30(Oct.30):1156-1163.
[15] 郑立新."低温真空等离子体渗硫技术"在柴油机上的应用性试验[J].内燃机,2005(04):27-30.
[16] 车延岗;刘沅东;袁静静;孙雪洁.钻杆接头材料35CrMo硫氮复合处理层的干摩擦学性能研究[J].探矿工程-岩土钻掘工程,2009(11):24-27.
[17] 赵军军;张平;韩文政.离子渗硫技术在装甲车辆中的应用[J].装甲兵工程学院学报,2003(1):10-14.
[18] 孔达;刘春莲;滕人全.渗硫技术在冲压滚子模具中的应用[J].制造技术与机床,2006(1):57-59.
[19] 张弋飞;张昕辉.润滑耐磨梯度材料(LGM)辊环与离子渗硫处理的轧辊[J].金属热处理,2004(1):79-82.
[20] 凌国伟,倪翰,萧域星.真空离子渗硫技术及设备特点[C].全国江膜学术讨论会会议论文集(全国薄膜学术讨论会),1999:262~265.
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