HOME JOURNALS CONTACT

Journal of Applied Sciences

Year: 2013 | Volume: 13 | Issue: 10 | Page No.: 1710-1715
DOI: 10.3923/jas.2013.1710.1715
Analysis of Thermograph and Experimental Research Based on the Air Tightness Detection of Infrared Thermography
Pengfei Tian, Jiping Zhou, Xinlong Zhu and Jin Cao

Abstract: The airtight detection of sealed devices have been focused by many enterprises, which has been seen as an important technical index of quality. Thus, the airtight detection of sealed devices is very important. In recent years, the infrared thermography detection technology has been widely valued because of its advantages of the fast response speed, the wide measuring range and the non-contact measurement. But there is no study about its application and research in gas tightness detection technology. Through theoretical analysis and experimental research, a kind of gas tightness detection method based on infrared thermography is put forward, which is on the basis of the existing air tightness detection method and the analysis of its application. Fluent software is used to simulate the temperature field of the leak. In test, through the heat analysis of the measured container with a defect, the temperature field distribution of leak is obtained. The results of the test provide the basis for leakage of judgment based on infrared thermography.

Fulltext PDF

How to cite this article
Pengfei Tian, Jiping Zhou, Xinlong Zhu and Jin Cao, 2013. Analysis of Thermograph and Experimental Research Based on the Air Tightness Detection of Infrared Thermography. Journal of Applied Sciences, 13: 1710-1715.

Keywords: analysis of thermograph, infrared thermography, Air tightness detection and test

REFERENCES

  • Belikov, S. and M. Enachescu, 2005. Methods and systems employing infrared thermography for defect detection and analysis. http://www.patentstorm.us/patents/6840666.html.


  • Fu, D.M., X.G. Li and Z.H. Tang, 2001. The infrared diagnosis technology and its soft system of electrical equipment fault and its soft system development. Automation Electric Power Syst., 9: 55-57.


  • Gu, B.Q. and X.L. Huang, 2006. Investigation of leak detection method by means of measuring the pressure increment in vacuum. Vacuum, 80: 996-1002.
    CrossRef    


  • Li, F., L.X. Wan and W. Xin, 2001. The development of intelligent leak detection instrument of high precision and medium-pressure. Instrument Tech. Sen., 2: 21-23.


  • Lu, S., 2003. The intelligent detection method research of Seal air tightness. Automation Instruction, 5: 17-19.


  • Miller, R.K., A.A. Pollock, D.J. Watts, J.M. Carlyle, A.N. Tafuri and J.J. Yezzi Jr, 1999. A reference standard for the development of acoustic emission pipeline leak detection techniques. NDT E Inter., 32: 1-8.
    Direct Link    


  • Niong, S.C., C.J. Hu and J.D. Zhu, 2009. The development of the automatic detector of differential pressure air tightness based on volume compensation. Ind. Instrumentation Automation, 5: 46-49.


  • Peng, G.Z., C.H. Ji and N. Ge, 2008. The present situation and development trend of air tightness test technology. Hydromechatronics Eng., 36: 171-174.


  • Suo, X.L., D.D. Yu and T.Q. Duan, 2005. Capillary rheometer finite element analysis of temperature field. Mech. Eng., 12: 99-101.


  • Zhu, Z.D., 2002. The establishment and practice of the scientific and perfect leakage measurement system. Mod. Mach. Tool Automatic Manuf. Tech., 11: 4-6.

  • © Science Alert. All Rights Reserved