Finite element simulation of the temperature curve of wire rods during the whole process of rolling
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摘要: 采用Deform模擬計算加熱爐鑄坯溫度分布,并通過‘黑匣子’試驗驗證,當加熱時間為70 min時,鑄坯心部與表面溫差約66℃,80 min時降到15℃.模擬計算軋制和水冷過程心部和表面溫度曲線,并通過測溫儀驗證,得出準確的摩擦熱、塑性變形熱以及水冷換熱系數模型.采用Fluent模擬計算風機的風場,使用手持測風儀驗證,再建立盤條搭接點溫度模型,計算出風冷線上強迫對流換熱、自然換熱和輻射換熱系數以及相變潛熱,使用熱成像儀測溫驗證.模擬與試驗結果十分吻合.Abstract: The temperature distribution of billets in a heating furnace is simulated by Deform software and is verified by the "black box". When the heating time is 70 min the temperature difference between surface and center is about 66℃, but it reduces to 15℃ after 80 min. The core and surface temperatures of wire rods in roiling and cooling are calculated and testified by thermometric indicator, and afterwards, the accurate friction heat, plastic deformation heat and heat transfer coefficient of water cooling are obtained. The wind field of fans is computed by Fluent software and is confirmed by anemometer. A temperature model of the lapping point is built and used to calculate the forced convection, natural and radiation heat transfer coefficients and the latent heat of phase transformation on the air-cooling line, which are validated by thermal imager. All the numerical simulation results agree well with the test data.
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Key words:
- wire rods /
- rolling /
- temperature /
- numerical simulation /
- finite element method
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