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A Fast Response Sensor for Continuously Measuring Molten Steel Temperature

机译:连续测量钢水温度的快速响应传感器

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Response lag is an outstanding problem of the traditional blackbody cavity sensor for continuously measuring the molten steel temperature, which is due to the thick-walled structure of the sensor, caused by the limitation of the sensor’s Al_(2)O_(3)–C material in harsh environment. Thus, a fast response sensor with a thin-walled temperature measuring unit of blackbody cavity has been developed. A new sensor material of Mo–W–ZrO_(2) cermet that had a small corrosion rate of about 0.05 mm/h was developed for making the thin-walled sensor with a thickness of 3 mm, while the thickness of the traditional sensor was 20–30 mm. The temperature measuring unit of the cermet tube was supported by an Al_(2)O_(3)–C unit. In addition, the structure of the fast sensor was designed to form an online blackbody cavity approximately for a high accuracy (measurement error ≤ 3°C) as the sensor was dipped into molten steel, the length/radius ratio of the temperature measuring unit of the cermet tube should reach 12. Industrial test showed that the fast sensor improved the response speed significantly from 5–6 min to about 55 s. It was helpful to solve the problem for continuously measuring the molten steel temperature of these fields that needed a fast response.
机译:响应滞后是传统黑体腔传感器连续测量钢水温度的一个突出问题,这是由于传感器的Al_(2)O_(3)–C的限制导致传感器的壁厚结构所致恶劣环境中的材料。因此,已经开发了具有黑体腔的薄壁温度测量单元的快速响应传感器。开发了一种新的Mo–W–ZrO_(2)金属陶瓷传感器材料,其腐蚀速率约为0.05 mm / h,可用于制造厚度为3 mm的薄壁传感器,而传统传感器的厚度为20–30毫米。金属陶瓷管的温度测量单元由Al_(2)O_(3)–C单元支撑。此外,快速传感器的结构设计为形成一个在线黑体腔,将传感器浸入钢水中时,其精度大约为(测量误差≤3°C),温度测量单元的长度/半径比为金属陶瓷管应达到12。工业测试表明,快速传感器将响应速度从5-6分钟显着提高到约55 s。解决连续测量这些需要快速响应的钢水温度的问题很有帮助。

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