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通过TD(热扩散)处理方法在Cr12MoV冷作模具钢表面制备了一层VC改性层,利用SEM,EDS,XRD和划痕法等手段对改性层组织形貌,成分和结合强度进行了表征,并与GCr15钢柱对磨进行了干摩擦滑动磨损实验,研究其在不同载荷下摩擦性能和往复磨损特性.结果表明:改性层是由VC相组成,其界面结合方式为冶金结合,划痕法测得改性层平均结合强度为51.2N;稳态摩擦因数随着载荷的增加而增大,合理的载荷减小摩擦因数和磨损量,往复磨损机制主要为磨粒磨损;VC改性层能够显著提高Cr12MoV钢的表面硬度和承载能力,可以显著改善其耐磨性能,VC改性层高硬度和结合强度是提高耐磨性的主要机制.

参考文献

[1] 王君丽,施雯.Cr12MoV钢表面磁控溅射Ti/TiN涂层的摩擦磨损性能研究[J].摩擦学学报,2005(02):126-130.
[2] LISTER M.Vanadium carbide diffusion coatings for tool and die components[A].Proceedings of the 23rd Conference (ASM In ternational)[C].Pennsylvania:Lawrence Convention Center,2006.162-166.,2006.
[3] 刘秀娟,王华昌.不同基体材料TD法盐浴渗钒层的组织及硬度[J].材料热处理学报,2010(01):150-154.
[4] 李广泽,乌晓燕,陈扬辉,李戈扬.反应磁控溅射碳化钒薄膜的微结构与力学性能[J].真空科学与技术学报,2009(02):168-172.
[5] 吴恩熙,颜练武,胡茂中.氧化钒制取碳化钒的热力学分析[J].硬质合金,2004(01):1-4.
[6] KONG De jun,ZHOU Chao zheng .The surface and interface properties of VC coating prepared by TD process[J].Journal of Advanced Manufacturing Systems,2011,10(1):183-190.,2011.
[7] 孔德军,周朝政.TD处理制备碳化钒(VC)涂层的摩擦磨损性能[J].摩擦学学报,2011(04):335-339.
[8] YANG M B,TANG L W,YANG H,et al .Microstructure and properties of surface coating for Cr12MoV steel treated by TD salt bath vanadizing process[J].Key Engineering Materials,2008,373(1):196-199.,2008.
[9] WANG Hongfu,WANG Huachang,PAN Chenggang.Vanadium Carbide Coating Growth on Die Steel Substrate in Borax Salt Bath[J].武汉理工大学学报(材料科学版)(英文版),2010(04):600-603.
[10] 龚伟,王一三,王静,等 .原位烧结合成(Ti,V)C/Fe复合材料的组织及形成机理[J].材料热处理学报,2008,29(2):31-35.GONG Wei,WANG Yi san,WANG Jing,et al.Microstructure and forming mechanism of (Ti,V)C/Fe composite synthesized by in situ sintering[J].Transactions of Materials and Heat Treatment,2008,29(2):31-35.,2008.
[11] 刘慧敏,宋振东,许萍,张晶.TIC/7075铝基复合材料的磨损实验研究[J].材料工程,2011(07):66-69,74.
[12] CHEN F S,WANG K L .The kinetics and mechanism of multi component diffusion on AISI 1045 steel[J].Surface Coatings Technology,1999,115:239-248.,1999.
[13] KWOK C K,THOMAS G..Microstructural influence on abrasive wear resistance of high strength,high toughness medium carbon steels[A].Proceedings of International Conference on Wear of Materials[C].New York:Lawrence Berkeley Laboratory,University of Califonia,1983.140-147.,1983.
[14] 孙德明,许崇海,杨刘波,吴建军.Cr3C2与(W,Ti)C增强氧化铝陶瓷的摩擦磨损性能[J].材料工程,2012(02):16-19.
[15] AGHAIEKHAFRI M,FAZLALIPOUR F .Vanadium carbide coatings on die steel deposited by the thermo reactive diffusion technique[J].Journal of Physics and Chemistry of Solids,2008,69(10):2465-2470.,2008.
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