首页 | 本学科首页   官方微博 | 高级检索  
     

凹印机烘干装置风嘴横风板结构参数研究
引用本文:张海燕,刘金金,徐卓飞,侯和平. 凹印机烘干装置风嘴横风板结构参数研究[J]. 包装工程, 2014, 35(23): 94-99
作者姓名:张海燕  刘金金  徐卓飞  侯和平
作者单位:西安理工大学;
基金项目:陕西省科学技术研究发展计划项目(2014K07-03)
摘    要:目的研究凹印机烘干装置风嘴横风板结构参数与风场分布的关系,以提高烘干系统热风利用效率。方法通过流体力学输纸模拟计算,对比仿真计算分析不同宽度横风板风嘴的风场,选取风场的迹线图和承印物表面的压力分布为主要评估标准,分析了涡流、迹线和压力分布随横风板长度的变化规律。结果随着横风板长度的增加,涡流逐渐向承印物表面接近,迹线在承印物表面处密度增加,承印物表面整体压力略有下降,压力分布更加均匀。结论在风嘴出风口区域增加横风板有利于提高热风利用率,可使承印物表面风场分布更加均匀。为凹印机烘干风嘴结构设计及优化提供了理论依据。

关 键 词:风嘴  凹印机  横风板  结构参数
收稿时间:2014-07-02
修稿时间:2014-12-10

Structural Parameters of Cross-wind-board for Drying Nozzle in Gravure Printing Machine
ZHANG Hai-yan,LIU Jin-jin,XU Zhuo-fei and HOU He-ping. Structural Parameters of Cross-wind-board for Drying Nozzle in Gravure Printing Machine[J]. Packaging Engineering, 2014, 35(23): 94-99
Authors:ZHANG Hai-yan  LIU Jin-jin  XU Zhuo-fei  HOU He-ping
Abstract:Objective To study the relationship between the length of cross-wind-board of nozzle in gravure printing and the heated air filed, in order to improve the hot wind utilization efficiency of the drying system. Methods The wind filed of drying nozzle with different length was analyzed through fluid simulation calculation. Trajectories and pressure distribution were taken as the evaluation parameters to study the fluid field, and the variation rules of vortex, trace and pressure distribution with the length of cross-wind-board were analyzed. Results It was found that cyclone became closer to the substrate surface and trajectories became more concentrated with the incensement of length of cross-wind-board. Meanwhile, the pressure decreased slightly and the distribution was more uniform. Conclusion It was proved that the cross-wind-board could improve the utilization efficiency of hot wind and make the distribution of wind field on the substrate surface more even. This work provides theoretical reference for the structural design and optimization of the drying nozzle in gravure printing machine.
Keywords:
本文献已被 CNKI 等数据库收录!
点击此处可从《包装工程》浏览原始摘要信息
点击此处可从《包装工程》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号