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In-Plant Demonstration of High-Temperature Emat System on Continuous Caster Strand

机译:连铸机高温高温动车系统的厂内演示

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摘要

The Pacific Northwest Laboratory (PNL) has been working with the Office of Industrial Programs of DOE and the American Iron and Steel Institute (AISI) since 1983 to develop a sensor that can determine the internal temperature of hot steel bodies. Research projects utilizing the relationship between acoustic velocity and temperature have been the primary technique investigated. The techniques most recently used have been laser-generated stress waves and EMAT systems [1,2,3]. Development of an ultrasonic sensor that can measure the acoustic velocity at high temperatures has been the major effort over the past few years. The internal temperature of steel bodies can be determined by measuring the time-of-flight through a known distance to calculate the velocity, and from the relationship between temperature and velocity, the average internal temperature can be determined [4,5].
机译:太平洋西北实验室(PNL)自1983年以来一直与美国能源部工业计划办公室和美国钢铁协会(AISI)合作,共同开发可确定热钢坯内部温度的传感器。利用声速和温度之间的关系的研究项目已经成为研究的主要技术。最近使用的技术是激光产生的应力波和EMAT系统[1,2,3]。在过去的几年中,开发一种可以测量高温声速的超声波传感器一直是人们的主要工作。可以通过测量经过已知距离的飞行时间以计算速度来确定钢体的内部温度,然后根据温度与速度之间的关系确定平均内部温度[4,5]。

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