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高炉炉墙厚度在线监测技术 被引量:8

ON-LINE MONITORING TECHNIQUE OF BLAST FURNACE LINING THICKNESS
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摘要 详细介绍了一种适用于高炉炉墙厚度测量的在线测厚技术。对所涉及到的高炉炉墙厚度测量的基本原理和要求、高炉超声波测厚传感器的特点、声电智能转换器的工作原理以及可监测多达128点炉墙厚度的分布式计算机网进行了描述。最后,对几座大型高炉炉眉测厚现场实验数据进行了分析和总结。 A kind of on-line measuring thickness technique on Blast Furnace lining is described in detailly. It includes the basic principle and the requirement of measuring thickness on Blast Furnace lining, the specialist of ultrusonic measuring thickness transducer, the principle of intelegent ultrasonic-electric converter and distributed computer system that can measure thickness up t0 128 points. In the end, the field experiment data and result of measuring thickness on serval Blast Furnaces are discussed.
出处 《包头钢铁学院学报》 1997年第3期241-246,共6页 Journal of Baotou University of Iron and Steel Technology
关键词 高炉 炉墙 超声波 计算机 厚度测量 measuring thickness of Blast Furnace lining, on-line measuring thickness technique, ultrasonic wave, computer 4 distributed computer system
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同被引文献36

  • 1张福明,党玉华.我国大型高炉长寿技术发展现状[J].钢铁,2004,39(10):75-78. 被引量:24
  • 2周静伟,薛生虎,李文军.实验观测数据的最优正则平滑方法[J].中国计量学院学报,2000,11(2):151-155. 被引量:1
  • 3李淑俊,崔大福,晋伟,董大明,杨友松,牛焕忠,阙跃华.高炉炉墙厚度测量的试验研究[J].无损检测,2005,27(5):248-251. 被引量:1
  • 4于仲洁,陈令坤,杨天钧,左海滨,国宏伟.武钢1号高炉冶炼专家系统开发的新进展[J].钢铁研究,2006,34(4):1-5. 被引量:7
  • 5储满生,郭宪臻,沈峰满,八木顺一郎.高炉数学模型的进展[J].中国冶金,2007,17(4):10-14. 被引量:12
  • 6Tanaka S, Yoshihara K. Fault diagnosis of inside wall of blast furnace based on time map of received reflectedwaves using ultrasonic sensors [ J ]. Transactions of the Society of Instrument and Control Engineers, 1999, 35 (8) : 1 026-1 035.
  • 7Surendra Kumar. Heat transfer analysis and estimation of refractory wear in an iron blast furnace hearth using finite element method [ J ]. ISIJ International, 2005, 45 ( 8 ) : 1 122-1 128.
  • 8Gilboy W B, Jenneson P M, Nayak N G. Industrial thickness gauging with cosmic-ray muons [ J]. Radiation Physics and Chemistry,2005, 74(6) : 454-458.
  • 9Nagamine K,Tanaka H K M, Nakamura S N, et al. Probing the inner structure of blast furnaces by cosmic-ray muon radiography [ J ]. Proceedings of the Japan Academy, Series B:Physical and Biological Sciences,2005, 81 (7) : 257-260.
  • 10Zhang Yu, Rohit Deshpande, Huang (Frank) D, et al. Numerical analysis of blast furnace hearth inner profile by using CFD and heat transfer model for different time periods [ J ]. International Journal of Heat and Mass Transfer, 2008 ( 51 ) : 186-197.

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