Multi-objective optimization of coating properties and cladding efficiency in 316L/WC composite laser cladding based on grey relational analysis

被引:3
作者
Guofu Lian
Shihong Xiao
Yang Zhang
Jibin Jiang
Youji Zhan
机构
[1] Fujian University of Technology,School of Mechanical and Automotive Engineering
[2] Western Carolina University,School of Engineering + Technology
来源
The International Journal of Advanced Manufacturing Technology | 2021年 / 112卷
关键词
Laser cladding; Micro-hardness; Wear volume; Cladding efficiency; Grey relational analysis;
D O I
暂无
中图分类号
学科分类号
摘要
This study aims at improving the coating properties and cladding efficiency in composite material laser cladding. Using Taguchi orthogonal experimental design, the correlation between processing parameters and index of cladding quality had been investigated. By altering the input of laser power, scanning speed, gas flow, and tungsten carbide powder ratio in laser cladding setup, their influence on the micro-hardness and wear resistance of the clad as well as the cladding efficiency had been studied. This study achieved processing parameter optimization with grey relational analysis by combining multiple objectives. Results showed that the micro-hardness and wear resistance of the clad were significantly affected by the WC powder ratio in the composite. Also, the laser power denoted a significant impact on the cladding efficiency. To obtain the clad with maximum micro-hardness and minimum wear volume while also attaining the maximum cladding efficiency, grey relational analysis was utilized to combine these multiple objectives in optimization. The processing parameter set obtained from optimization met the targets and showed a small-scale error rate of 4.92% in the grey relational grade prediction. This study verified the applicability and provided the theoretical basis for multiple-objective optimization of the coating properties and cladding efficiency in composite laser cladding.
引用
收藏
页码:1449 / 1459
页数:10
相关论文
共 153 条
[1]  
Liu C(2020)Modeling of thermal behavior and microstructure evolution during laser cladding of AlSi10Mg alloys Opt Laser Technol 123 105926-2407
[2]  
Li C(2018)Analysis and prediction on geometric characteristics of multi-track overlapping laser cladding Int J Adv Manuf Technol 97 2397-3682
[3]  
Zhang Z(2020)Control and prediction of forming quality in curved surface multi-track laser cladding with curve paths Int J Adv Manuf Technol 106 3669-8265
[4]  
Sun S(2020)Parameters optimization for laser cladding of Inconel 625 on ASTM A592 Steel J Mater Res Technol 9 8258-487
[5]  
Zeng M(2020)Modeling and optimization for laser cladding via multi-objective quantum-behaved particle swarm optimization algorithm Surf Coat Technol 381 125129-4990
[6]  
Wang F(2020)Study on process optimization of WC-Co50 cermet composite coating by laser cladding Int J Refract Met Hard Mater 87 105133-878
[7]  
Guo Y(2019)Influence of laser parameters on graphite morphology in the bonding zone and process optimization in gray cast iron laser cladding Opt Laser Technol 109 480-333
[8]  
Wang J(2019)Process optimization of laser cladding Ni60A alloy coating in remanufacturing Opt Laser Technol 120 105718-188
[9]  
Lian G(2019)Effects of CeO 2 on the microstructure and properties of laser cladding 316L coating J Mater Eng Perform 28 4983-480
[10]  
Yao M(2020)Effect of solution treated 316L layer fabricated by laser cladding on wear and corrosive wear resistance Opt Laser Technol 121 105788-4957