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基于安培力的金属与非金属自动分离垃圾箱 被引量:2

Design of dustbin of automatic separation of metallic and nonmetallic rubbish based on Ampere force
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摘要 传统的利用磁力分离金属与非金属垃圾的方法存在难以分离出非导磁材料金属垃圾的问题。为此,研究了非导磁性金属垃圾的分类问题,提出了基于安培力的金属和非金属垃圾分类方法,以AT80C52单片机为控制器,设计了一种用于步行街的小型环保垃圾箱,能够对行人随手扔进的垃圾进行金属和非金属现场自动分类。介绍了该垃圾箱的组成结构及工作原理,并给出了详细的电路控制系统设计方案。该垃圾箱具有设计制造成本低、使用方便、实用性强等特点。 The traditional method of separation in metal and separale metal garbages with non-magnetic materials. In order to non-metal garbages uses the magnetic force,but it is difficult to overcome tile deficiency of traditional classification methods, this paper studies the problem of classification of metal garbages with non-magnetic materials,not only proposing classification principle of the metal and non-metal garbages based on Ampere force,but also designing a small environmental protection dustbin which is placed on the pedestrian street and takes AT80C52 microcontroller as controller.The dustbin can classificate metal and nonmetal garbages automatically which are thrown readily by the pedestrians at once.This paper also introduces the structure and working principle of this dustbin composition, and offers a design scheme of the control electrical system in detail. The environmental pro- tection garbages dustbin have characteristics of the low cost in the design and manufacture, easy to using,and practicality.
出处 《电子技术应用》 北大核心 2013年第1期50-54,共5页 Application of Electronic Technique
基金 国家自然科学基金项目(31060118)
关键词 AT80C52 金属垃圾 安培力 AT80C52 : metal garbages Ampere force
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  • 1王全强,段晨龙,张洪建.涡电流操作参数对铝分选影响的研究[J].中国资源综合利用,2005,23(12):22-25. 被引量:8
  • 2张洪建,王全强,宋振玲.废弃PCB中铝的涡电流分选研究[J].河北建筑科技学院学报,2005,22(4):12-15. 被引量:8
  • 3李明德,李涛,王明才.稀土永磁辊式涡电流分选机的研制[J].矿冶工程,1997,17(1):38-41. 被引量:5
  • 4NOURREDDINE MENAD,BO BJORKMAN,SHUNLI ZHANG,et al.Thermodynamic conditions for the formation of dioxin during the recycling of non ferrous metals from electric and electronic scrap[A].EPD Congress,1998,657-673. 被引量:1
  • 5EXPORTING HARM.The High-Tech Trashing of Asia[J].The Basel Action Network and Silicon Valley Toxics Coalition,2002,(2):15-22. 被引量:1
  • 6JENS BROBECH LEGARTH.Environmental decision making for recycling options[J].Resources,Conservation and Recycling,1997,19:109-135. 被引量:1
  • 7THEO LEHNER.Integrated recycling of non-ferrous metals at Boliden Ltd[A].Ronnskar Smelter[C].IEEE International Symposium on electronics & the Environment,1998,42-47. 被引量:1
  • 8FUJIMURAHIROYUKI.Treatment of abandoned electronic equipment[P].日本专利:JP210650-2000.. 被引量:1
  • 9高忠爱,等.固体废弃物的处理与处置[M].高等教育出版社,1993. 被引量:2
  • 10何亚群,段晨龙,王海锋,等.电子废弃物资源化处理[M].化学工业出版社,2006,9. 被引量:3

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