期刊文献+

碳化硼对电弧喷涂涂层性能的影响 被引量:1

Effect of boron carbide on properties of arc spraying coatings
下载PDF
导出
摘要 将碳化硼(B4C)陶瓷粉末和其它合金元素与304L不锈钢带轧制成粉芯丝材,采用电弧喷涂技术制备金属陶瓷复合涂层.研究了B4C在电弧喷涂中的应用.利用XRD,SEM对涂层的形貌、相组成和磨损表面进行了分析.利用自行设计的高温磨粒磨损装置和高温冲蚀设备分别评价了B4C对涂层耐高温磨粒磨损性能和耐高温冲蚀性能的影响.结果表明,粉芯丝材喷涂工艺良好,B4C陶瓷与粉芯中其它组分反应,可以形成含Fe3B,CrB,FexN i23-xB6,Fe23(C,B)6,(Cr,Fe)7C3和Fe3C等硬质相的复合涂层,大幅度提高了涂层的硬度和耐磨耐冲蚀性能. A cored wire containing the boron carbide ceramic powder and other alloying elements powder was fabricated with 304L stainless steel sheath and the metal ceramic composite coating was deposited by arc spraying.The feasibility of boron carbide in the application of arc spraying was studied.The microstructure,phase compositions and worn surface morphologies of the coatings were analyzed by means of scanning electron microscopy and X-ray diffraction.High temperature abrasive wear performance and erosion performance were evaluated by high-temperature abrasive wear tester designed by authors and high temperature erosion devices,respectively.The results show that the cored wires have good process ability for arc spraying.The composite coatings contains Fe3B,CrB,FexNi23-xB6,Fe23(C,B)6,(Cr,Fe)7C3 and Fe3C hard phases due to the in-situ synthesis of B4C ceramic particle with other alloying elements powder,which result in a significant increase in the hardness,wear-resistantance and erosion-resistantance of the coating.
出处 《焊接学报》 EI CAS CSCD 北大核心 2010年第11期65-68,共4页 Transactions of The China Welding Institution
基金 北京市教委科技发展项目(JP009012200803)
关键词 碳化硼 磨损 电弧喷涂 粉芯丝材 boron carbide wear arc spraying cored wire
  • 相关文献

参考文献4

  • 1Ulrich S, Ehrhardt H, Schwan J, et al. Subplantation effect in magnetron sputtered superhard boron carbide thin films [ J ]. Diamond and Related Materials, 1998, 6(7) : 835 -838.
  • 2彭倩,邱绍宇,武兵书,郑学斌,张东博,姜超.碳化硼涂层材料研究进展[J].金属热处理,2005,30(10):7-13. 被引量:9
  • 3魏琪,周新建,李辉,栗卓新.新型高温磨粒磨损测试装置及方法[J].焊接学报,2008,29(4):65-68. 被引量:2
  • 4魏琪,冯艳玲,栗卓新,等.一种高温磨粒磨损测试装置及方法:中国,200910077010.4[P].2009-08-19.

二级参考文献68

  • 1孙金坛,邱德润.非晶碳化硼薄膜[J].合肥工业大学学报(自然科学版),1993,16(3):165-168. 被引量:2
  • 2唐国宏,张兴华,陈昌麒.碳化硼超硬材料综述[J].材料导报,1994,8(4):69-72. 被引量:43
  • 3赵雁潮,魏琪,栗卓新,任春岭.热喷涂技术在锅炉管道防护中的应用进展[J].材料保护,2006,39(8):43-46. 被引量:16
  • 4[1]Jeanine T,DeMasi-Marcin,Gupta D K.Protective coatings in the gas turbine engine[J].Surface and Coatings Technology,1994,68-69:1-9.
  • 5[4]Mann B S,Prakash B.High temperature friction and wear characteristics of various coating materials for steam valve spindle application[J].Wear,2000,240:223-230.
  • 6[5]Silhu Ts,Prakash S,Agrawal R D.State of the art of HVOF coating investigations-A review[J].Marine Technology Society Journal,2005,39(2):53-64.
  • 7[6]Mackenstein P,Schmidt W.Evaluating the strength of defective pipes:methods and assessment criteria[J].Pipes & Pipelines Int,1996,18(3):23-30.
  • 8[9]Avery H S.Classification and precision of abrasion test[J].Wear of Materials,Reston Virginia U.S.A.1983,14(2):148-157.
  • 9Valentine P G,Trester P W,Winter J,et al. B4C-SiC reaction-sintered coating on graphite for plasma facing components [ J ]. Journal of Nuclear Materials, 1995,220-222:756-761.
  • 10Terry Hu, Lynn Steihl, William Rafaniello, et al. Structures and properties of disordered boron carbide coatings generated by magnetron sputtering [ J ]. Thin Solid Films, 1998,332:80-86.

共引文献9

同被引文献7

引证文献1

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部