Temperature uniformity of profiled grinding wheel under high-frequency induction brazing

被引:0
作者
Li Qilin
Ding Kai
Lei Weining
Kong Linglei
Chen Jiajia
Shan Daping
Wang Xichao
机构
[1] Jiangsu University of Technology,School of Mechanical Engineering
[2] Nanjing Forestry University,undefined
[3] Aecc Aviation Power Co.,undefined
[4] Ltd.,undefined
[5] Shanghai Dianji University,undefined
来源
The International Journal of Advanced Manufacturing Technology | 2021年 / 117卷
关键词
High-frequency induction brazing; Profiled grinding wheel; Temperature uniformity; Response surface methodology;
D O I
暂无
中图分类号
学科分类号
摘要
High-frequency induction brazing (HFIB) technology is one of the commonly used methods in brazing super abrasive grinding wheels. However, it’s difficult to obtain a uniform temperature distribution on the profiled wheel surface during HFIB, which is caused by the proximity and edge effects during high-frequency induction heating. In this study, the temperature uniformity of the profiled wheel surface and the optimization design of the coil were investigated by finite element simulation based on Box-Behnken design of response surface methodology. The mathematical model of average temperature and temperature uniformity was defined to evaluate the temperature distribution on the profiled surface of the grinding wheel. The regression equations of the response value average temperature and temperature uniformity were built based on the Box-Behnken design of simulation results. The two regression equations could well predict the results for the additional simulations. An optimization coil was designed for the brazing of profiled grinding wheel according to these regression equations. The experimental results showed good agreement with the simulation results within 4.62% errors, which verified the finite element model and the regression equations were all reliable. High-frequency induction brazing of profiled cBN grinding wheel showed that a consistent quality was obtained on the brazed wheel surface.
引用
收藏
页码:1091 / 1099
页数:8
相关论文
共 59 条
[1]  
Ghosh A(2017)Interfacial reaction and wetting behavior of active Ag-Cu filler alloys on surface of cBN grits and its influence on failure patterns of brazed joint Int J Refract Met H 68 96-103
[2]  
Chattopadhyay AK(2015)Fabrication and performance of monolayer brazed CBN wheel for high-speed grinding of superalloy Int J Adv Manuf Technol 80 1173-1180
[3]  
Li Q(2017)Compressive strength and interface microstructure of PCBN grains brazed with high-frequency induction heating method Acta Metall Sin 30 641-649
[4]  
Xu J(2017)Study of brazed diamond micro-powder burs fabricated using induction brazing with either an amorphous or a crystalline Ni-based filler alloy Int J Refract Met Hard Mater 62 58-63
[5]  
Su H(2019)Residual stresses of polycrystalline CBN abrasive grits brazed with a high-frequency induction heating technique Chin J Aeronaut 32 1020-1029
[6]  
Lei W(2017)Active metal brazing of SiO2-BN ceramic and Ti plate with Ag-Cu-Ti + BN composite filler J Mater Sci Technol 33 1392-1401
[7]  
Zhu Y(2014)3D modeling of induction hardening of gear wheels J Comput Appl Math 270 231-240
[8]  
Ding W(2020)An asynchronous dual-frequency induction heating process for bevel gears Appl Therm Eng 169 114981-55
[9]  
Zhao Z(2016)Nonplanar mold surface heating using external inductive coil and magnetic shielding materials Int Commun Heat Mass Transfer 71 44-9
[10]  
Fu Y(2017)Study on induction heating of workpiece before gear rolling process with different coil structures Appl Therm Eng 114 1-860