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Assessment of a cracked reinforced concrete supporting structure for a converter in a steel melting shop through non-destructive testing and a statistical approach - a case study

机译:通过非破坏性测试和统计方法评估钢熔化商店转换器的裂纹钢筋混凝土支撑结构 - 以统计方法为例

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摘要

The subject of this paper is the occurrence of cracks and other types of damage, such as delamination of the reinforcement cover, carbonation, porosity, etc, which have occurred in a reinforced concrete supporting structure for a converter in a steel melting shop in India. The structure consists of two thick reinforced concrete walls on which the converter rests. Converters are used in a steel melting shop for blowing oxygen through hot metal and steel is produced through a reaction with carbon, silicon, phosphorus, sulphur, etc. A scientific review of the existing non-destructive test methods is carried out with reference to this case study and critical features of the testing process are described, which will help site engineers to correctly devise the test sequence and analysis procedure for assessment of the structures in specific critical conditions. Crack depth is estimated by analysing test results based on the ultrasonic pulse velocity. The paper explains how appropriate selection of the method and basic parameters is essential for estimating the most accurate crack depth. Lack of understanding of the existing condition of the material of the structure may lead to an incorrect interpretation of the test results. Further to this, a simple statistical procedure is described to identify significant cracks without detailed testing. The repair methodology and its specific features are also discussed in this paper. This case study on the assessment of the converter supporting structure will help engineers to provide solutions for similar types of damaged structure found in industry.
机译:本文的主题是发生裂缝和其他类型的损坏,例如增强盖的分层,碳酸化,孔隙率等,这在印度钢熔化商店的钢熔化店的钢筋混凝土支撑结构中发生。该结构包括两个厚钢筋混凝土墙,转换器休息。转换器用于钢熔化店,用于通过热金属吹氧气,通过与碳,硅,磷,硫等反应产生钢的钢铁制造。对现有的非破坏性测试方法进行科学审查是参考此进行的描述了测试过程的案例研究和关键特征,这将有助于现场工程师正确地设计测试序列和分析程序,以便在特定的临界条件下评估结构。通过基于超声脉冲速度分析测试结果来估计裂纹深度。 The paper explains how appropriate selection of the method and basic parameters is essential for estimating the most accurate crack depth.对结构材料的现有状况缺乏了解可能导致对测试结果的解释不正确。此外,描述了简单的统计程序,以识别没有详细测试的显着裂缝。本文还讨论了修复方法及其具体特征。本案例研究转换器支撑结构的评估将有助于工程师为行业中发现的类似类型的损坏结构提供解决方案。

著录项

  • 来源
    《Insight》 |2020年第11期|633-641|共9页
  • 作者单位

    Material & Structural Evaluation Group (MSEG) Central Mechanical Engineering Research Institute Mahatma Gandhi Avenue Durgapur 713209 West Bengal India;

    MSEG Central Mechanical Engineering Research Institute India;

    MSEG Central Mechanical Engineering Research Institute India;

    MSEG Central Mechanical Engineering Research Institute India;

    MSEG Central Mechanical Engineering Research Institute India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    converter structure; crack; ultrasonic pulse velocity; cumulative density;

    机译:转换器结构;裂缝;超声波脉冲速度;累积密度;

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