氩弧熔敷原位合成Ti(C,N)-TiB2/Ni60A基复合涂层的组织与耐磨性Microstructure and wear resistance of in-situ synthesis Ti(C,N)-TiB2 particle reinforced Ni60A matrix composite coating by argon arc cladding
王振廷,郑维
摘要(Abstract):
在Q235D钢表面采用氩弧熔敷技术制备了Ti(C,N)-TiB2增强Ni60A基复合涂层。利用SEM对复合涂层的显微组织进行了分析,Ti(C,N)颗粒呈花瓣状和不规则的球状,TiB2颗粒呈短棒状和六面体,并对其组织结构进行表征。利用显微硬度计和摩擦磨损试验机,对复合涂层的性能进行了测试和分析。涂层表面平均硬度达到了1250 HV。摩擦磨损实验表明,涂层的磨损机制主要为磨粒磨损,伴随着粘着磨损。
关键词(KeyWords): 氩弧熔敷;原位合成;Ti(C,N)-TiB2;复合涂层
基金项目(Foundation): 黑龙江省教育厅重点基金资助项目(1251469)
作者(Author): 王振廷,郑维
DOI: 10.13289/j.issn.1009-6264.2011.12.023
参考文献(References):
- [1]王振廷,周晓辉,张显友,等.原位自生TiC-TiB2增强Fe基复合涂层的凝固特性及形成机理[J].材料热处理学报,2009,30(3):154-159.WANG Zhen-ting,ZHOU Xiao-hui,ZHANG Xian-you,et al.Solidification characteristic and formation mechanism of in-situ synthesized TiC-TiB2reinforced Fe-matrix composite coating[J].Transactions of Materials and Heat Treatment,2009,30(3):154-159.
- [2]马乃恒,方小汉,梁工英.激光熔敷原位合成TiC/Al复合材料[J].中国有色金属学报,2000,10(6):843-846.MA Nai-heng,FANG Xiao-han,LIANG Gong-ying.In-situ synthesis of TiCp/Al composite by using laser cladding[J].The Chinese Journal ofNonferrous Metals,2000,10(6):843-846.
- [3]陈颢,李惠琪.等离子束表面冶金原位颗粒增强铁基涂层的研究[J].材料热处理学报,2006,27(2):114-117.CHEN Hao,LI Hui-qi.Study on particulate reinforced iron-matrix coating produced by plasma jet surface metallurgy[J].Transactions of Materials andHeat Treatment,2006,27(2):114-117.
- [4]While G V,macKenzie K J D,Brown W M,et al.Carbothermal synthesis of tianinum nitride-Part I the reaction sequence[J].Journal of MaterialsScience,1992,(27):4288-4293.
- [5]杨锦,李芳,刘颖,等.Ti(C,N)粉末制备技术的研究及进展[J].硬质合金,2005,22(1):51-54.YANG Jin,LI Fang,LIU Ying,et al.Research and development of synthesis technology of Ti(C,N)powders[J].Cemented Carbide,2005,22(1):51-54.
- [6]Matsushita j,Suzuki T,Sano A.Wire electrical discharge machining of TiB2 composite[J].J Ceram Soc Jap,1992,100(2):219-222.
- [7]刘宏伟,张龙,等.自反应喷射成形Ti(C,N)-TiB2复合陶瓷坯件的反应转化机理[J].热加工工艺,2008,37(6):26-29.LIU Hong-wei,ZHANG Long,et al.Reactive transformation mechanism of Ti(C,N)-TiB2 composite ceramic preforms by serf-reactive spray forming[J].Hot Working Technology,2008,37(6):26-29.
- [8]王振廷,陈丽丽,张显友.钛合金表面氩弧熔覆TiC增强复合涂层组织与性能分析[J].焊接学报,2008,29(9):43-45.WANG Zhen-ting,CHEN Li-li,ZHANG Xian-you.Microstructure and properties of TiC reinforced composite coating fabricated on Ti alloy by GTAW[J].Transactions of the China Welding Institution,2008,29(9):43-45.
- [9]宋思利,邹增大,王新洪,等.多层氩弧熔敷含TiC颗粒增强涂层的微观组织及耐磨性能[J].焊接学报,2007,28(4):33-37.SONG Si-li,ZOU Zeng-da,WANG Xin-hong,et al.Microstructure and wear-resisting property of TiC particle reinforced coatings claded by TiCwelding with multiple layer[J].Transactions of the China Welding Institution,2007,28(4):33-37.
- [10]WANG Zhen-ting,ZHOU Xiao-hui,ZHAO Guo-gang.Microstructure and formation mechanism of in-situ TiC-TiB2/Fe composite coating[J].TransNonferrous Met Soc China,2008,18:831-835.
- [11]Lv W J,Zhang D,Zhang X N,et al.Growth mechanism of reinforcements in in-situ synthesized(TiB+TiC)/Ti composites[J].Trans.NonferrousMet Soc China,2001,11(1):67-71.
- [12]周晓辉.氩弧熔覆原位合成TiC-TiB2增强金属基复合涂层及其磨损机理研究[D].哈尔滨:黑龙江科技学院,2009:46-47.
- [13]Locci A M,Orr’u R,Cao G,et al.Effect of ball milling on simultaneous spark plasma synthesis and densification of TiC-TiB2 composites[J].Materials Science and Engineering A,2006,(434):23-29.
文章评论(Comment):
|
||||||||||||||||||
|
||||||||||||||||||