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Study on cooling process of copper tube after three-roll planetary rolling

机译:三辊行星轧制后铜管冷却过程的研究

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摘要

Copper tubes are efficient heat exchange parts in refrigeration industry, and their quality has a bearing on the grade of corresponding products. The cooling process of copper tube after three-roll planetary rolling is a key step in the production of copper tube by the casting and rolling method, and its cooling effect matters to the quality of copper tube products. Aiming at the characteristics of motion of a rolled piece in the through water cooling with a cooling water jacket, the method of "stepwise" moving cooling water jacket was used in this paper to achieve equivalence to the motion of the rolled piece, realizing finite element simulation of the whole process of three-roll planetary rolling and cooling of copper tube. The velocity field and pressure field of the fluid in the cooling water model were analyzed, and it was found that there existed a flow "dead zone" with the velocity below 8 m/s, there was a "negative pressure" phenomenon, and there were more eddy currents occurring. Through the study on the temperature field during the cooling process of the rolled piece, it was found that there was a phenomenon of non-uniform temperature distribution in the cooling process of the rolled piece. With the maximum temperature difference at each monitoring point in the cooling process of rolled piece as the evaluation criterion for the uniformity of temperature distribution in the cooling process of rolled piece, the process parameters affecting the rolled piece cooling effect, including the size of water inlet, the size of water outlet, and the pressure of entering water, were studied respectively, and the optimum process parameter values for improving the quality of rolled pieces were finally obtained. The accuracy of the model was verified by comparatively analyzing the metallographic microstructure and microhardness between the factory produced sample and the thermally simulated sample.
机译:铜管是制冷行业中高效的热交换部件,其质量与相应产品的等级有关。三辊行星轧制后的铜管冷却过程是通过铸造和轧制方法生产铜管的关键步骤,其冷却效果对铜管产品的质量至关重要。针对轧件在带冷却水套的直通水冷却中的运动特性,本文采用“逐步”移动冷却水套的方法,以达到轧件运动的等效性,实现了有限元。模拟三辊行星轧制铜管和冷却过程。分析了冷却水模型中流体的速度场和压力场,发现存在速度低于8 m / s的流动“死区”,存在“负压”现象,并且发生了更多的涡流。通过对轧件冷却过程中温度场的研究,发现在轧件冷却过程中存在温度分布不均匀的现象。以轧件冷却过程中每个监控点的最大温差作为轧件冷却过程中温度分布均匀性的评估标准,影响轧件冷却效果的工艺参数包括进水口尺寸分别研究了出水口尺寸和入水压力,最终获得了提高轧件质量的最佳工艺参数值。通过比较分析工厂生产的样品和热模拟样品之间的金相组织和显微硬度,验证了模型的准确性。

著录项

  • 来源
    《International communications in heat and mass transfer》 |2020年第1期|104393.1-104393.21|共21页
  • 作者

  • 作者单位

    National Engineering Research Center for Equipment and Technology of Cold Strip Rolling Yanshan University Qinhuangdao 066004 China;

    National Engineering Research Center for Equipment and Technology of Cold Strip Rolling Yanshan University Qinhuangdao 066004 China CRRC Qingdao Sifang Co. Ltd. Qingdao 266111 China;

    Northeastern University at Qinhuangdao Qinhuangdao 066004 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Copper tube; Heat transfer; Planetary rolling; Cooling; Temperature field;

    机译:铜管;传播热量;行星滚动冷却;温度场;

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