Empirical Modeling of Heat Transfer in Cylindrical Polymer Rods Manufactured by 3D Printing

A. Hrițuc, A. Mihalache, L. Slătineanu, O. Dodun, G. Nagîț
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Abstract

Abstract The assessment of the ability of polymeric materials to transmit heat is of interest both from the point of view of ensuring maximum thermal transfer and thermal insulation. A simple equipment was designed and materialized for studying thermal transfer in polylactic acid rods made by 3D printing. The results of some experimental tests carried out using the equipment were mathematically processed, determining empirical mathematical models of the second-degree polygon type and a power-type function. The analysis of the empirical mathematical models and the graphic representations made on their basis revealed a decrease in temperature with the increase of the distance from the heated end of the cylindrical rod type test sample and the increase in temperature along the rod until the state of thermal equilibrium is reached.
3D打印圆柱形聚合物棒传热的经验建模
从确保最大传热和隔热的角度来看,对聚合物材料传热能力的评估都很有意义。设计并制作了一种简单的设备,用于研究3D打印聚乳酸棒的热传递。对利用该设备进行的一些试验结果进行了数学处理,确定了二次多边形型和幂型函数的经验数学模型。通过对经验数学模型的分析和在此基础上所作的图形表示表明,随着离圆柱形棒型试样受热端距离的增加,温度降低,沿杆温度升高,直至达到热平衡状态。
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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