期刊文献+

NAK80模具钢表面激光熔覆钴基合金涂层的组织和摩擦磨损性能 被引量:4

Microstructure and Friction and Wear Properties of Laser Clad Co-Based Alloy Coating on Surface of NAK80 Mold Steel
下载PDF
导出
摘要 采用激光熔覆方法在NAK80模具钢表面制备钴基合金熔覆层,用扫描电镜、X射线衍射仪分析了熔覆层的显微组织,通过干滑动摩擦试验研究了熔覆层的摩擦磨损性能,分析了其磨损机制,并用三维表面形貌仪观察磨损试样的表面形貌。结果表明:熔覆层的主要组成相为Cr23C6、Co3Mo2Si、MoC、FeCr和γ-Co;熔覆层由涂层与基体界面处的平面晶区、涂层中部的胞状树枝晶区和表层的网状等轴晶粒区组成;经激光熔覆处理后的NAK80模具钢表面硬度和耐磨性得到了显著改善,与NAK80模具钢相比,熔覆层表面的平均摩擦因数降低了约34%,比磨损率下降了约91.3%;熔覆层的磨损机制为粘着磨损和轻微的显微切削。 The Co-based alloy cladding coating was successfully fabricated on the surface of NAK80 mold steel by laser cladding technology. The microstructure of the coating was analyzed by scanning electron microscopy (SEM), X-ray diffraction (XRD). The property of friction and wear, and the wear mechanism were studied by the dry sliding friction test. The morphology of wear samples were measured by 3D surface profilometer. The results show that the cladding coating was mainly composed of Cr28C6, Co3 Mo2 Si, MoC, FeCr andγ-Co. The plane crystal in the interface of the coating and the substrate, cellular dendrite at the central zone and reticular equiaxed crystal near top surface were observed in the cladding coating. The microhardness and wear resistance of NAK80 mold steel surface were improved noticeably by laser cladding technology. Compared with NAK80 mold steel, the average friction coefficient of the cladding coating decreased by about 34%, and the wear rate reduced by about 91.3%. The wear mechanism for the laser cladding coating was adhesive wear and slight micro-cutting.
出处 《机械工程材料》 CAS CSCD 北大核心 2012年第8期37-41,共5页 Materials For Mechanical Engineering
基金 国家自然科学基金资助项目(51002101) 台州学院培育基金资助项目(2011PY31)
关键词 激光熔覆 钴基合金 NAK80模具钢 组织 摩擦磨损性能 laser cladding Co-based alloy NAK80 mold steel microstructure friction and wear property
  • 相关文献

参考文献13

二级参考文献79

共引文献71

同被引文献31

  • 1顾彩香,顾卓明,王平宗.含纳米稀土、铁复合粒子润滑油的摩擦学性能[J].中国稀土学报,2006,24(z1):140-143. 被引量:9
  • 2赵高敏,王昆林,李传刚.稀土对Fe基合金激光熔覆层抗磨性能的影响[J].摩擦学学报,2004,24(4):318-321. 被引量:46
  • 3罗宏,龚敏.奥氏体不锈钢的晶间腐蚀[J].腐蚀科学与防护技术,2006,18(5):357-360. 被引量:129
  • 4苏志东.核级阀门密封面堆焊[J].阀门,2007(5):18-25. 被引量:5
  • 5FARNIA A, MALEK GHAINI F, Ocel-′k V, et al. Microstructural characterization of Co-based coating deposited by low power pulse laser cladding [J]. J Mater Sci, 2013, 48: 2714-2723.
  • 6CHEN Chang-jun, XU Xing, CAO Qin, et al. Laser surface cladding of plastic-molded steel 718H by CoCrMo alloy [J]. Journal of Materials Engineering and Performance, 2012, 21: 946-950.
  • 7REENA AWASTHI, SANTOSH KUMAR, KAMLESH CHANDRA, et al. Effect of specific energy input on microstructure and mechanical properties of nickel-base intermetallic alloy deposited by laser cladding [J]. Metallurgical and Materials Transactions A, 2012, 43(12): 4688-4702.
  • 8NISHIMOTO K, SAIDA K, FUJITA Y. Crystal growth in laser surface melting and cladding of Ni-Base single crystal superalloy [J]. Welding in the World, 2008, 52(5/6): 64-78.
  • 9FRENK A, KURZ W. Microstructure effects on the sliding wear resistance of a cobalt-based alloy [J]. Acta mater, 1994, 174: 81-91.
  • 10BOETTIN GER W J, CORIELL S R, GREER A L, et al. Solidification microstructures: Recent developments, future directions [J]. Acta mater, 2000(48): 43-70.

引证文献4

二级引证文献21

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