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鋼管張力減徑過程傳熱模型

Heat transfer model in pipe stretch-reducing process

  • 摘要: 為了提高鋼管張力減徑過程的軋制質量、降低能耗以及控制終軋溫度的準確性,從而為鋼管出爐溫度提供科學設定依據,通過對傳熱機理分析,建立了鋼管張力減徑過程傳熱模型,給出了除鱗、軋制及空冷階段鋼管邊界熱流的計算式.基于塑性材料的變分原理,建立了軋制變形區的變形熱計算模型.結果表明:變形熱對鋼管溫度分布影響不可忽略;該模型能真實反映鋼管在張力減徑過程中的溫度變化,與實測結果吻合較好,可用于鋼管再加熱和張力減徑過程中的參數分析及工藝優化.

     

    Abstract: In order to improve the rolled quality of pipe stretch-reducing process, reduce energy consumption, exactly control finishing temperature, and thus offer scientific set values to pipe tapping temperature, based on analyzing the mechanism of heat transfer, a mathematical model of heat transfer in pipe stretch-reducing process is derived, in which the boundary conditions in the processes of descaling, rolling and air cooling are provided. The equation of deformation heat in rolling deformation zone is also obtained using the variation principle of plastic material. The results indicate that the effect of deformation heat on the steel pipe's thermal distribution should not be ignored. The mathematical model provided can present the pipe's temperature fluctuation and agree well with the testing values in the process of stretch-reducing. Accordingly, the model can be used in the parameter analysis and technologic optimization of the processes of steel pipe reheating and stretch-reducing.

     

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