Inspecting the current thickness of a refractory wall inside an operational blast furnace using the impact echo method

Author:

Wang Chung-Yue,Chiu Chin-Lung,Tsai Kun-Yi,Chen Pi-Kuan,Peng Peng-Chi,Wang Hao-Lin

Funder

China Steel Corporation

Publisher

Elsevier BV

Subject

Mechanical Engineering,Condensed Matter Physics,General Materials Science

Reference6 articles.

1. Monitoring of refractory wall recession using high-temperature impact-echo instrumentation;Sebastian;Proj Rep,2004

2. Sadri A, Timmer R. Blast Furnace Non-Destructive Testing (NDT) for defect detection and refractory measurements. In: Iron & Steel Technology conference proceedings, AISTech 2006, vol. II, May 1–4, Cleveland, Ohio, USA; 2006.

3. Sadri A, Walters G. Determination of refractory and castable quality in operating industrial furnaces, using a stress wave reflection technique. Material Degradation: innovation, inspection, control and rehabilitation, In: Gu GP, Elboujdaini M, Alfantazi A, editors. Proceedings of 44th annual conference of metallurgists, COM 2005., Calgary, Alberta, Canada; 2005.

4. Flaw detection in concrete by frequency spectrum analysis of impact-echo waveforms;Carino,1986

5. Carino NJ, Sansalone M. Impact-echo: a new method for inspecting construction materials. In; Proceedings of nondestructive testing and evaluation of materials for construction, University of Illinois, August; 1988.

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