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多參數耦合下冷軋鋁帶工作輥分段冷卻調節特性

Multi-parameter coupled subsection cooling regulation characteristics of work rolls in aluminum cold rolling

  • 摘要: 為得到多參數耦合下冷軋鋁帶工作輥分段冷卻調節特性,建立了工作輥和軋件的一體化耦合傳熱模型.耦合傳熱建模過程包含工作輥和軋件導熱微分方程的建立、軋件變形熱和摩擦熱的求解、換熱邊界條件的確立、工作輥熱輥形的計算及采用二維交替差分對微分方程進行求解.仿真結果表明,同一軋制參數下工作輥分段冷卻正負方向調節能力近似相等,但單向調節幅度受軋制參數影響較大,軋制長度、噴射梁工作壓力和摩擦系數的增加對分段冷卻調控能力具有促進作用,軋制速度的作用則相反.

     

    Abstract: A coupled heat transfer model of work rolls and an aluminum strip is established to obtain the multi-parameter coupled subsection cooling regulation characteristics of work rolls in aluminum cold rolling. This coupled model includes building the thermal conduction differential equation of the work rolls and strip,solving the strip deformation heat and friction heat,establishing the heat transfer boundary conditions,calculating the work roll thermal crown,and solving the differential equations by using a two-dimensional alternating difference method. Simulation results show that the positive and negative adjustment domains are approximately equal at the same rolling parameters,but each domain is affected by rolling parameters. The increase of rolled length,header pressure and friction coefficient has positive effect on the subsection cooling control ability,while the rolling speed is on the contrary.

     

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