Growth Characteristics and Reinforcing Behavior of In-situ NbCp in Laser Cladded Fe-based Composite Coating

被引:2
作者
Qingtang Li
Yongping Lei
Hanguang Fu
机构
[1] SchoolofMaterialsScienceandEngineering,BeijingUniversityofTechnology
关键词
Laser cladding; In-situ; NbC particle; Formation mechanism; Mechanical property;
D O I
暂无
中图分类号
TB306 [];
学科分类号
0805 ; 080502 ;
摘要
Over the past decade,researchers demonstrated much interest in laser cladded metal matrix composite coatings for its good wear resistance.In this paper,in-situ NbCp reinforced Fe-based wear-resistance coatings with different designed NbC contents were produced by laser cladding.The formation mechanism of NbC particle was analyzed.The effects of NbC content on the microstructure and mechanical properties of coatings were investigated.It was revealed that α-(Fe,Cr),(Fe,Cr)7C3,NbC existed in all coatings.NbC particles formed by the chemical reaction of Nb and C dissolved in the molten pool.The increase of designed NbC content led to the growth of the porosity amount,and the increase of the size and the area ratio of the particle,as well as the transformation of the NbCp morphology from quadrangle to petaloid shape.Moreover,the micro-hardness and the wear resistance of the coating were improved with the increase of NbC.When NbCp content was 30 wt%,the mechanical properties decreased slightly.
引用
收藏
页码:766 / 772
页数:7
相关论文
共 14 条
[1]  
Abrasion Resistance Enhancement of Ultrafine-structured WC-Co Coating Fabricated by using in situ Synthesized Composite Powder[J]. Haibin Wang,Xiaoyan Song,Chongbin Wei,Yang Gao,Guangsheng Guo.Journal of Materials Science & Technology. 2013(11)
[2]   Cr12MoV模具钢激光熔覆Ni基、Co基合金的组织与性能 [J].
代大桥 ;
梁工英 ;
田晓青 .
热加工工艺, 2004, (08) :49-51
[3]   自生TiC/Ti复合材料中TiC的生长习性 [J].
金云学 ;
李庆芬 ;
张虎 ;
曾松岩 ;
张二林 .
金属学报, 2002, (11) :1223-1227
[4]  
Laser coating of aluminum alloy EN AW 6082-T651 with TiB 2 and TiC: Microstructure and mechanical properties[J] . Dunja Ravnikar,Narendra B. Dahotre,Janez Grum.Applied Surface Science . 2013
[5]  
In Situ Synthesis, Microstructure, and Properties of TiC and (Ti,W)C-Reinforced Fe-Mn-Al Austenitic Steel Matrix Composites[J] . Ashok Kumar Srivastava,Karabi Das.Journal of Materials Engineering and Performance . 2012 (11)
[6]  
Effects of WC particle size on the wear resistance of laser surface alloyed medium carbon steel[J] . Xin Tong,Fu-hai Li,Min Kuang,Wen-you Ma,Xing-chi Chen,Min Liu.Applied Surface Science . 2011 (7)
[7]  
Effect of laser cladding process parameters on clad quality and in-situ formed microstructure of Fe–TiC composite coatings[J] . Ali Emamian,Stephen F. Corbin,Amir Khajepour.Surface & Coatings Technology . 2010 (7)
[8]  
Laser producing Fe-based composite coatings reinforced by in situ synthesized multiple carbide particles[J] . Chaofeng Wu,Mingxing Ma,Wenjin Liu,Minlin Zhong,Weiming Zhang,Hongjun Zhang.Materials Letters . 2008 (17)
[9]  
Temperature distribution in laser-clad multi-layers[J] . Materials Science & Engineering A . 2004 (1)
[10]  
Laser cladding of MMC coatings on aluminium substrate: influence of composition and microstructure on mechanical properties[J] . L. Dubourg,D. Ursescu,F. Hlawka,A. Cornet.Wear . 2004 (11)