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1)  Thermal crown control
热凸度控制
2)  crown control
凸度控制
1.
This paper expounds the shape classification of strip, analyzes the reasons why the shape wave occurs on the band steel in the cold rolling mill, and probes into the crown control of the band steel.
叙述了带钢的板形分类,分析了在冷轧厂生产中带钢板产生浪形的原因,探讨了带钢的凸度控制。
3)  crown dynatic control
动态凸度控制
4)  superheat control
过度热控制
5)  thermal crown
热凸度
1.
Effects of work roll hifting on its temperature field and thermal crown;
工作辊横移对工作辊温度场及热凸度的影响
2.
A model was used to calculate the elastic deformation of the work rolls in the finishing train of 1549mm hot strip mill in TISCO,and a two-dimensional model was employed to calculate their thermal crown.
采用本城恒模型计算了太原钢铁(集团)有限公司1549mm热连轧机精轧机组工作辊的弹性变形,并用二维模型计算了其热凸度。
3.
It is found that the model can predict the thermal crown of a hot strip mill with high accuracy.
采用一种具有较高精度的样条有限条法对轧制过程中工作辊的温度场和热凸度进行计算和预报。
6)  thermal camber
热凸度
1.
According to the definition of profile and the law of volume constancy, the relationship between profile value and thermal camber is formulated.
通过分析箔材轧制过程中温度的产生和热量的交换情况,建立热平衡方程;由板形的定义和轧制前后体积不变原理建立板形值和热凸度的关系;在此基础上,确定板形值和冷却液流量控制的关系。
2.
A dynamic thermal camber model of rolls has been derived according to Fourier′s thermal conducting equation.
根据傅里叶热传导方程,导出了轧辊的动态热凸度数学模型。
3.
The thermal camber of rolls is a very important factor affecting the exit thickness transverse distribution of hot strip mills.
轧辊热凸度是影响热带钢连轧机负载辊缝的重要因素,高效率的工作辊冷却水系统是生产高质量热轧板带的重要保证。
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