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Controlled Cooling of Hot Rolled Steel Channels by Water Spraying on the Final Cooling Bed

机译:通过在最终冷却床上喷水来控制热轧钢通道的冷却

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The objective of this research is to design an effective and relatively simple method for controlled cooling of hot rolled steel channels by water spraying on the final cooling bed after continuous cast steel billets passing through reheating furnace and sequential rolls to form channels. The need for this research arose as the channels were being cooled by forced air draft and natural convection which brought the temperature of the channels to about 270°C (518°F) at the shear stand. Steel at this temperature is too hot for convenient handling by the operators. Additional cooling by water spraying would be an acceptable solution but such cooling should be designed to enable an acceptable microstructure to be developed in the channel, as the microstructure of steel is strongly affected by nonequilibrium cooling through the eutectoid range: the mechanical properties of steel are a consequence of the microstructure. The approach followed in this investigation was first to develop a finite element method (FEM) to determine the temperature profiles in the channel subjected to cooling by water spraying and natural convection and arrive at suitable water spray rates to bring the temperature of the channel at the shear stand to levels suitable for convenient handling. PATRAN was used for preprocessing and ABAQUS for processing and post processing. Next, laboratory experiments were conducted to determine the microstructure and hardness of channels at the spray rates found suitable through FEM, to suggest the water spray rate most suitable for providing a temperature convenient for handling and for developing a desirable microstructure.
机译:这项研究的目的是设计一种有效且相对简单的方法,该方法是在连续铸造的钢坯通过加热炉和顺序轧辊形成通道之后,通过在最终冷却床上喷水来控制热轧钢通道的冷却。由于通道是通过强制通风和自然对流冷却的,因此在剪切台处通道的温度达到约270°C(518°F)时,就需要进行此项研究。在此温度下钢太热,操作员无法方便地搬运。通过喷水进行额外的冷却是可以接受的解决方案,但这种冷却应设计成能够在通道中形成可接受的显微组织,因为在共析范围内,钢的显微组织会受到非平衡冷却的强烈影响:微观结构的结果。本研究中采用的方法是首先开发一种有限元方法(FEM),以确定通过喷水和自然对流进行冷却的通道中的温度分布,并以合适的喷水速率将通道的温度保持在剪切架的高度适合于方便搬运。 PATRAN用于预处理,ABAQUS用于处理和后处理。接下来,进行实验室实验以确定通过FEM发现合适的喷射速率下的通道的微观结构和硬度,以表明最适合于提供便于处理的温度和形成所需的微观结构的喷水速率。

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