首页> 外文学位 >Development of an on-line aqueous particle sensor to study the performance of inclusions in a 12 tonne, delta shaped full scale water model tundish.
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Development of an on-line aqueous particle sensor to study the performance of inclusions in a 12 tonne, delta shaped full scale water model tundish.

机译:开发了一种在线水性颗粒传感器,以研究12吨,三角形全尺寸水模型中间包中夹杂物的性能。

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摘要

Detection of particulate matter thinly dispersed in a fluid medium with the aid of the difference in electrical conductivity between the pure fluid and the particles has been practiced at least since the last 50 to 60 years. The first such instruments were employed to measure cell counts in samples of biological fluid. Following a detailed study of the physics and principles operating within the device, called the Electric Sensing Zone (ESZ) principle, a new device called the Liquid Metal Cleanliness Analyzer (LiMCA) was invented which could measure and count particles of inclusions in molten metal. It provided a fast and fairly accurate tool to make online measurement of the quality of steel during refining and casting operations. On similar lines of development as the LiMCA, a water analogue of the device called, the Aqueous Particle Sensor (APS) was developed for physical modeling experiments of metal refining operations involving water models. The APS can detect and measure simulated particles of inclusions added to the working fluid (water). The present study involves the designing, building and final application of a new and improved APS in water modeling experiments to study inclusion behavior in a tundish operation. The custom built instrument shows superior performance and applicability in experiments involving physical modeling of metal refining operations, compared to its commercial counterparts. In addition to higher accuracy and range of operating parameters, its capability to take real-time experimental data for extended periods of time helps to reduce the total number of experiments required to reach a result, and makes it suitable for analyzing temporal changes occurring in unsteady systems. With the modern impetus on the quality of the final product of metallurgical operations, the new APS can prove to be an indispensable research tool to study and put forward innovative design and parametric changes in industrially practised metallurgical operations.
机译:至少从最近的50到60年以来,已经借助于纯流体和颗粒之间的电导率的差异来检测稀薄地分散在流体介质中的颗粒物质。首先使用这种仪器来测量生物流体样品中的细胞计数。在详细研究了设备内部运行的物理原理和原理(称为电子传感区(ESZ)原理)之后,发明了一种新设备,称为液态金属清洁度分析仪(LiMCA),该设备可以测量和计数熔融金属中夹杂物的颗粒。它提供了一种快速且相当准确的工具,可以在精炼和铸造操作期间在线测量钢的质量。在与LiMCA相似的开发路线上,开发了一种称为水颗粒传感器(APS)的设备的水类似物,用于涉及水模型的金属精炼操作的物理模型实验。 APS可以检测和测量添加到工作液(水)中的夹杂物的模拟颗粒。本研究涉及在水模型实验中设计,构建和最终应用新的和改进的APS,以研究中间包操作中的夹杂物行为。与商用金属仪器相比,这种定制仪器在涉及金属精炼操作物理模型的实验中显示出卓越的性能和适用性。除了具有更高的准确性和操作参数范围外,它还可以长时间获取实时实验数据,这有助于减少获得结果所需的实验总数,并适合分析不稳定的时间变化系统。随着现代冶金业务最终产品质量的提高,新型APS可以证明是研究和提出工业实践冶金业务创新设计和参数变化的必不可少的研究工具。

著录项

  • 作者

    Chakraborty, Abhishek.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Engineering Electronics and Electrical.;Engineering Materials Science.;Engineering Metallurgy.
  • 学位 M.Eng.
  • 年度 2010
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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