摘要
在商用ANSYS流体力学软件平台的基础上,通过二次开发建立了可控气氛密封箱式炉温度场和流场的三维几何模型和边界条件,并成功开发了可控气氛密封箱式炉温度场-流场计算机辅助设计系统。通过模拟与试验相结合优化了可控气氛密封箱式炉的结构。
On the basis of a commercial Ansys fluid mechanics software platform, a three-dimensional geometric model and boundary conditions for the temperature field and flow field in the atmosphere-controlled sealed chamber furnace were established via a secondary development, and the compute-aided design system for the temperature field-flow field in the atmosphere-controlled sealed chamber furnace was successfully developed. The structure of atmosphere-controlled sealed chamber furnace was optimized through the combination of simulation and test.
作者
束东方
韩伯群
SHU Dongfang;HAN Boqun(Jiangsu Fengdong Thermal Technology Co.,Ltd.,Yancheng 224100,Jiangsu China)
出处
《热处理》
CAS
2022年第5期39-41,58,共4页
Heat Treatment
基金
国家重点研发计划(2018YFB2001903)。
关键词
可控气氛密封箱式炉
ANSYS软件
模拟
温度场
流场
速度场
atmosphere-controlled sealed chamber furnace
Ansys software
simulation
temperature field
flow field
velocity field