中国塑料 ›› 2008, Vol. 22 ›› Issue (11): 87-91 .DOI: 10.19491/j.issn.1001-9278.2008.11.020

• 机械与模具 • 上一篇    下一篇

聚合物水下切粒模板温度场的数值模拟研究

任世雄,李进良,卢 涛,王奎升   

  1. 北京化工大学机电工程学院,北京 100029
  • 收稿日期:2008-01-01 修回日期:1900-01-01 出版日期:2008-11-26 发布日期:2008-11-26

Numerical Analysis of Temperature Field of Die for Polymer Pelletizing under Water

REN Shi-xiong, LI Jin-liang, LU Tao ,WANG Kui-sheng   

  1. School of Mechanical and Electrical Engineering, Beijing University of Chemical Technology, Beijing 100029
  • Received:2008-01-01 Revised:1900-01-01 Online:2008-11-26 Published:2008-11-26
  • Contact: LI Jin-liang

摘要: 建立了7种不同模孔和3种不同加热油流道水下切粒模板的三维传热模型,并对各个模型进行了数值求解,获得了各个模板模型内部的温度场;并且计算了在不同温度的冷却水、不同的加热油的对流换热系数、不同模板材料下的模板的温度场。计算结果表明,由于受到冷却水的冷却作用,各模板切粒带表层处温度比较低;沿着厚度方向,由于受到加热油和聚合物的加热作用,切粒带深层的温度逐渐升高;在加热油加热和冷却水冷却共同作用下,在0≤z≤10mm处,切粒面浅层的温度梯度较大。通过分析,模孔尺寸对模板的温度场基本没有影响;加热油流道形式、冷却水的温度、加热油的对流换热系数和模板的材料对模板的温度场有一定的影响,这为模板的结构设计、边界条件的确定和模板材料的选择提供了可靠的理论依据。

关键词: 聚合物, 水下切粒模板, 温度场, 数值模拟

Abstract: Three-dimensional models of heat transfer for a die with seven different geometrical dimensions of die holes and three different geometrical dimensions of channels of conduct oil of pelletizing under water were created and solved by numercial simulation to obtain temperature field inside the die. The temperature field of the die under the conditions of different temperatures of cooling water, different coefficients of heat transfer of heating oil, different materials were also calculated. Due to the cooling effect of water, the temperature of the surface of pelletizing zone of the die was relatively low in the direction along the thickness; due to the heating effect of heating oil and polymer, the temperature of the deep zone of pelletizing zone of the die was gradually increased. Combined effects of heating of oil and cooling of water led to greater gradient of temperature close to the pelletizing surface, in the range of 0 z  10mm. Through analysis, it was found that the geometrical dimensions of the die hole did not affect the temperature field of the die; while the form of channels of heating oil, the temperature of cooling water, heat transfer coefficient of heating oil, and the material of the die did. These results provided a reliable theoretical basis for the structural design of die, determination of the boundary conditions, and the choice of materials.

Key words: polymer, die for pelletizing under water, temperature field, numerical analysis