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分纸压线机机构优化
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作者 宋凯磊 《今日自动化》 2024年第2期75-77,共3页
文章将以往分纸压线机的单纵切刀单压线结构改造为双压线双切刀结构,解决了传统换单等待时间长和资源浪费问题,换单时间从10 s减少到1 s。该优化在旧线升级时无需挪动大量设备,可直接替换,达到了提高换单速度及控制成本的效果。
关键词 分纸压线机 结构设计 换单速度 低成本
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柔版印刷机的最新发展
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《全球瓦楞纸箱工业》 2004年第U08期34-36,共3页
柔版印刷作为一种环保印刷,在近几年内得到了迅速发展,特别是柔版印刷在应用了计算机技术后,使得定位套准、张力控制、屏幕显示、质量跟踪和反馈实现了自动化,节省了时间,降低了操作难度——这一切。
关键词 柔版印刷机 送纸部 印刷部 换单速度 生产速度 技术发展
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Simulation of Velocity and Temperature Distributions of Displacement Ventilation System with Single or Double Heat Sources
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作者 Wenfei WU Xuan Wu +1 位作者 Yanhui Feng Xinxin Zhang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2007年第2期155-158,共4页
In order to obtain a better understanding of flow characteristics of displacement ventilation, the three-dimensional numerical models are developed using the CFD technology. The numerical simulation results are verifi... In order to obtain a better understanding of flow characteristics of displacement ventilation, the three-dimensional numerical models are developed using the CFD technology. The numerical simulation results are verified by experiments, based on this, the velocity and temperature distribution of three-dimensional displacement ventilation system with single and double heat sources are studied. Velocity and temperature fields under two different cases of heat source are analyzed and compared. The numerical results show that there are three layers in vertical temperature fields of displacement ventilation system with single or double heat sources, and the vertical temperature distribution of single heat source is different from that of double heat sources. When indoor load is large, the comfort requirement of people indoor can't be satisfied with displacement ventilation system only, thus an additional refrigeration system is necessary. Furthermore, under the condition of two heat sources, the displacement ventilation parameters can't be computed simply according to single heat source inlet parameters, therefore the interaction between heat sources should be considered. 展开更多
关键词 displacement ventilation velocity distribution vertical temperature distribution CFD
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