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Design research on the temperature sensor in hot iron based on ANSYS emulation

机译:基于ANSYS仿真的铁水温度传感器设计研究。

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The research on internally-formed pillar-shaped temperature field must be do, in order to solve the structure design and work mode design problems of the hot metal temperature sensor for the blast furnace. But the massive manpower and material resources would be consumed if the experimental method is utilized purely. Heat-conducting analysis model is established on pillar-shaped cavity by applying ANSYS. With simulating the characters of heat-conducting in the molten iron during temperature measurement, setting up parameters, putting on heat loads and setting up time, simulation study on the temperature field is carried out, and some graphic results are presented. Meanwhile, simulation experiments in lab and verifying experiments on site of the hot metal are carried out, which lead to the same results as ANSYS. This simulation study has an important guide meaning in optimizing the sensor design.
机译:为了解决高炉铁水温度传感器的结构设计和工作模式设计问题,必须对内部形成的柱状温度场进行研究。但是,如果单纯采用实验方法,将会消耗大量的人力和物力。应用ANSYS在柱形腔上建立了导热分析模型。通过模拟温度测量过程中铁水的导热特性,设置参数,增加热负荷和设置时间,对温度场进行了仿真研究,并给出了一些图形结果。同时,进行了室内模拟实验和铁水现场验证实验,得出与ANSYS相同的结果。该仿真研究对优化传感器设计具有重要的指导意义。

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