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电液比例控制技术在对焊机烧化系统的应用 被引量:3
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作者 梁红斌 曹树平 +2 位作者 易孟林 张伟 介予西 《机床与液压》 北大核心 2000年第1期19-20,共2页
本文提出了采用PC控制技术和电液比例技术,实现对焊机烧化过程控制的新方式,它用可编程控制器控制比例阀实现油缸变速烧化运动,该方案的实施可有效提高焊接质量,减少废品率,烧化曲线可根据不同工况方便地调整,它具有实际应用价... 本文提出了采用PC控制技术和电液比例技术,实现对焊机烧化过程控制的新方式,它用可编程控制器控制比例阀实现油缸变速烧化运动,该方案的实施可有效提高焊接质量,减少废品率,烧化曲线可根据不同工况方便地调整,它具有实际应用价值,为闪光对焊机新产品开发提出了一种全新的烧化控制方式,也为进一步研究焊机计算机控制和微机监控打下基础。 展开更多
关键词 闪光对焊机 电液比例阀 烧化系统 汽车 轮辋
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Combustion and energy balance of aluminum holding furnace with bottom porous brick purging system 被引量:3
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作者 ZHANG Jia-qi ZHOU Nai-jun ZHOU Shan-hong 《Journal of Central South University》 SCIE EI CAS 2012年第1期200-205,共6页
For acquiring the details in aluminum holding furnace with bottom porous brick purging system,efforts were performed to try to find out the potential optimal operation schemes.By adopting transient analysis scheme and... For acquiring the details in aluminum holding furnace with bottom porous brick purging system,efforts were performed to try to find out the potential optimal operation schemes.By adopting transient analysis scheme and constant boundary temperature,combustion in the furnace was investigated numerically using computational fluid dynamics(CFD).The predicted gas temperature shows good agreement with the measured results,and the predicted energy distribution of the furnace is consistent with that obtained from energy balance experiment,which confirms the reliability of the numerical solution.The results show that as the fuel-air mixture temperature rises up from 300 K to 500 K,the energy utilization of the furnace could increase from 34.55% to 37.14%.However,as the excess air coefficient increases from 1.0 to 1.4,energy utilization drops from 34.55% to 29.56%.Increasing the combustion temperature is the most effective way to improve the energy efficiency of the furnace.High reactant temperature and medium excess air coefficient are recommended for high operation performance,and keeping the furnace jamb sealed well for avoiding leakage has to be emphasized. 展开更多
关键词 aluminum holding furnace COMBUSTION FLOW numerical study computational fluid dynamics
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