Numerical Simulation of Heat Transfer During Thermoforming

C. Wang, H. F. Nied
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Abstract

Heat transfer during thermoforming can be conceptually modeled in three distinct stages. In the first stage, the polymer sheet is heated to a temperature above its glass transition temperature in preparation for forming. Heating during this stage is usually accomplished using radiant heaters and causes sagging of the plastic sheet. Once the sheet has attained the necessary forming temperature, the second stage of heat transfer occurs when the polymer sheet is subjected to large stretching during rapid inflation. Heat transfer during this inflation stage is strongly influenced by the large increase in surface area that accompanies stretching of the plastic. Finally, in the third conceptual heat transfer stage, the plastic contacts the metal mold surface and heat is conducted from the hot plastic to the cooler metal surface. Of particular interest in this paper, is the calculation of the cooling that occurs during the rapid inflation phase of polymer processing. Sample calculations are presented for various thermoforming scenarios that illustrate the nature of this cooling mechanism.
热成形过程传热的数值模拟
热成型过程中的传热可以在概念上分为三个不同的阶段。在第一阶段,将聚合物片材加热到高于其玻璃化转变温度的温度,以准备成型。在这一阶段的加热通常是使用辐射加热器完成的,并导致塑料板下垂。一旦板材达到必要的成型温度,当聚合物板材在快速膨胀过程中受到大拉伸时,传热的第二阶段就会发生。在这个膨胀阶段的传热受到伴随塑性拉伸的表面积的大量增加的强烈影响。最后,在第三个概念传热阶段,塑料接触金属模具表面,热量从热塑料传导到较冷的金属表面。本文特别感兴趣的是计算在聚合物加工的快速膨胀阶段发生的冷却。样品计算提出了各种热成型的情况下,说明了这种冷却机制的性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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