INFLUENCE OF THERMOPLASTIC PROCESSING PARAMETERS ON THEIR INTERNAL TEMPERATURE

F. A. R. Campos, L. D. da Silva
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Abstract

With technological advances, polymers are increasingly used to manufacture various components that were previously exclusively manufactured with metals. One of the significant challenges in polymer processing is its relatively low thermal resistance, since relatively small temperature variations, especially when compared to metals and ceramics, lead to significant changes in material properties and in the final component geometry. This paper investigated how the internal temperature of polymers, subjected to an intermittent particulate jet deposition process in conjunction with a continuous flow of hot air, is affected by variation in surface roughness, polymer type, and air pressure. As the main result, low efficiency in heat transfer was caused by the combination of the convective nature of the heat exchange with the low thermal conductivity of the polymers. The variables with the most significant influence on the process were the intermittence and pressure of the particulate jet.
热塑性塑料加工参数对其内部温度的影响
随着技术的进步,聚合物越来越多地用于制造以前仅用金属制造的各种部件。聚合物加工中的一个重大挑战是其相对较低的热阻,因为相对较小的温度变化,特别是与金属和陶瓷相比,会导致材料性能和最终组件几何形状的显着变化。本文研究了聚合物的内部温度如何受到间歇颗粒喷射沉积过程和连续热空气流的影响,表面粗糙度、聚合物类型和空气压力的变化。作为主要结果,传热效率低是由热交换的对流性质与聚合物的低导热性相结合造成的。对该过程影响最大的变量是颗粒射流的间歇和压力。
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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