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用于颗粒物监测仪的小型法拉第杯的优化设计

Optimum Design of Small Faraday Cup for Ultrafine Particle Monitor

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【作者】 曹阳阳王焕钦秦飞虎桂华侨刘建国余同柱孙强吕亮王杰程寅

【Author】 CAO Yang-yang;WANG Huan-qin;QIN Fei-hu;GUI Hua-qiao;LIU Jian-guo;YU Tong-zhu;SUN Qiang;LYU Liang;WANG Jie;CHENG Yin;State Key Laboratory of Transducer Technology,Institute of Intelligent Machines,Chinese Academy of Sciences;Department of Hefei Institute of Physical Science,University of Science and Technology of China;Key Laboratory of Environmental Optics and Technology,Anhui Institute of Optics and Fine Mechanics,Chinese Academy of Sciences;Key Laboratory of Opto-Electronic Information Acquisition and Manipulation of Ministry of Education,Anhui University;

【机构】 传感技术联合国家重点实验室中国科学院合肥智能机械研究所中国科学技术大学合肥物质研究院中国科学院环境光学与技术重点实验室中国科学院安徽光学精密机械研究所光电信息获取与控制教育部重点实验室安徽大学

【摘要】 设计出一种结构简单、尺寸小,可用于微型超细颗粒物监测仪的法拉第杯。法拉第杯气流采用从敏感电极部分的前端进、后端出方式,内部敏感电极部分为镂空结构,可填充多孔金属材料。对法拉第杯的离子检测模型进行理论分析表明,提高法拉第杯中敏感电极碰撞表面积可有效提高法拉第杯的离子检测效率。经过优化设计的法拉第杯敏感电极内部填充PPI为60的多孔金属材料,比优化前的法拉第杯检测效率提高86%,配合只需放大倍数1012的静电计便可满足对普通室内环境的大气超细颗粒物数浓度的检测。设计的法拉第杯提高了颗粒物所带的电荷的检测效率,可用于大气超细颗粒物数浓度检测。

【Abstract】 A simple structure,small size Faraday cup which used for miniature ultrafine particle monitor was designed.Faraday cup airflow went from the sensitive electrode front,went out from the backend. Internal sensitive electrode was designed with hollow structure to fill the porous metal material.Through the study of the theory of Faraday cup ion detection model analysis,it showed that improving the Faraday cup sensitive electrode collision area can improve the efficiency of Faraday cup ion detection effectively.Optimized design of Faraday cup detection efficiency increased by 86% than before optimization which sensitive electrode internal filling PPI is 60 of porous metal materials,with only 1012 magnification of the electrometer can satisfy for atmospheric ultrafine particles in common indoor environment testing.Faraday cup design in this paper improves the efficiency of the detection of particles with the charge,can be used for atmospheric ultrafine particle number concentration

【基金】 国家重点研发计划(2016YFC0201000);中国科学院战略性先导科技专项(XDB05040403);国家自然科学基金项目(91544218,61673368,41305021)
  • 【文献出处】 仪表技术与传感器 ,Instrument Technique and Sensor , 编辑部邮箱 ,2018年02期
  • 【分类号】X851
  • 【被引频次】6
  • 【下载频次】284
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