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Improved mathematical model for sheet reheat phase in thermoforming process

机译:改进的热成型过程中板材再热阶段的数学模型

摘要

Thermoforming is widely used industrial manufacturing process in which tub-shaped components are manufactured by heating a plastic sheet in the oven and formed to the desired shape through vacuum or pressure. Heating of the sheet is the most important phase which determines product quality and process efficiency. In order to automate the process to improve the product quality and process efficiency, the development of a mathematical model of heat propagation to the sheet and inside the sheet is imperative. Heat transfer takes place through the combination of convection, conduction and radiation energy, which conducts and absorbed inside the sheet and greatly depends on material properties, oven air temperature and velocity and sheet color. A mathematical model based on variable material properties including density, specific heat and thermal conductivity is developed and validated against experimental data. The effect of both oven air temperature and velocity is studied by simulating the already developed and validated variable properties mathematical model for different values of oven air velocity and temperature. The sheet color effect is also studied by considering two extreme cases of black color sheet and white color sheet and validated by simulating the models and comparing the results against experimental data. The sheet heating model based on exact solution to conduction equation with constant material properties and convection heat as boundary condition is also developed and validated against experimental data.
机译:热成型是广泛使用的工业制造工艺,其中通过在烤箱中加热塑料片并通过真空或压力将其成形为所需形状来制造桶形部件。片材的加热是决定产品质量和过程效率的最重要阶段。为了使过程自动化以提高产品质量和过程效率,必须建立热传导到薄板和薄板内部的数学模型。传热是通过对流,传导和辐射能的结合来进行的,对流能在片材内部传导和吸收,并且在很大程度上取决于材料性能,烤箱空气温度,速度和片材颜色。建立了基于可变材料特性(包括密度,比热和导热系数)的数学模型,并针对实验数据进行了验证。通过模拟已经开发和验证的针对烤箱空气速度和温度的不同值的可变属性数学模型,研究了烤箱空气温度和速度的影响。还通过考虑黑色和白色两种极端情况来研究纸页色彩效果,并通过模拟模型并将结果与​​实验数据进行比较来验证纸页色彩效果。还建立了基于材料特性恒定且对流热为边界条件的传导方程精确解的薄板加热模型,并针对实验数据进行了验证。

著录项

  • 作者

    Khan Sohail Akbar;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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