• CN:11-2187/TH
  • ISSN:0577-6686

›› 2004, Vol. 40 ›› Issue (4): 40-43,4.

• 论文 • 上一篇    下一篇

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气动系统元件结构参数对系统结露的影响的研究

金英子;杨庆俊   

  1. 浙江工程学院机械与控制学院;哈尔滨工业大学机电工程学院
  • 发布日期:2004-04-15

EFFECT OF STRUCTURE SIZES OF PNEUMATIC COMPONENTS ON CONDENSATION

Jin Yingzi;Yang Qingjun   

  1. College of Mechanical Engineering and Automation, Zhejiang Institute of Science and Technology School of Machatronic Engineering, Harbin Institute of Technology
  • Published:2004-04-15

摘要: 气动系统的结露严重影响系统的性能和寿命,正确判别和预防系统的结露是工程实际面临的难题。气动系统的结露和很多因素有关,至今为止没有完善的、简便的判别方法。对1 000多种由不同容积的容器和管路组成的气动系统进行了试验研究,提出元件结构参数中影响气动系统结露的主要参数为容器容积V、放气管过流面积A和长度l。引进放气管量纲一的体积和容器出口处量纲一的有效过流面积,对试验结果进行研究的结果表明,放气管量纲一的体积可作为系统是否发生结露和发生何种结露的判据,十分简便易用。以量纲一的体积为横轴,外部结露系统、不结露系统和内部结露系统从左到右依次排列。外部结露区、不结露区和内部结露区的临界点数值与运行条件有关,而与气动元件结构参数无关。

关键词: 结构参数, 结露, 量纲分析, 气动系统

Abstract: Condensation greatly reduces performance and life of pneumatic systems, and it is important to judge and prevent it in engineering practice. There are many factors that influence condensation of pneumatic systems, and there is no simple criteria easy to use till now. The influence of structure parameters of pneumatic components on system condensation is studied by more than 1 000 experiments. The dominant parameters that have significant influence on condensation were found, namely container volume V, length of exhausting tube l and section area of exhausting tube A. By introducing dimensionless volume of exhausting tube and dimensionless section area of outlet of container in the further analysis of experimental results, a very simple and thus very useful criterion, dimensionless volume of exhausting tube Al/V, is finally achieved to judge if inner condensation or outer condensation would occur or not. Outer condensation systems, non-condensation systems and inner condensation systems exist subsequently from left to right along the axis of Al/V. The critical value of those zones would change as running conditions change, but would not change while the structure parameters of pneumatic components change.

Key words: Condensation, Pneumatic systems, Structure size Dimension analysis

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