汽车工业中人造革的生产

J. Mlýnek, R. Srb
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引用次数: 1

摘要

本文重点介绍了汽车工业中人造革的生产过程(如汽车仪表板上的人造革)。一个成功的制造工艺是利用位于模具上方的红外加热器加热模具表面。我们将描述一种模具升温模型,以及一种计算模具表面热辐射强度的方法,以便精确定位红外加热器的位置。在计算整个模具表面的热辐射强度时,我们将使用靠近红外加热器的传感器的热辐射强度的实验测量值。在加热过程中,有必要保持整个模具表面大致相同的热辐射强度。本文所描述的模型允许我们为此目的优化红外加热器的位置。通过这种方式,我们在人造皮革的整个表面上获得相同的材料结构和色调。我们将应用遗传算法来优化加热器的位置。用Matlab语言编制了模具表面热辐射强度计算程序和加热器位置优化程序。最后一章提供了一个实际的例子,描述了解决方案。
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Artificial leather production in the automotive industry
This article is focused on the process of artificial leather production in the automotive industry (e.g. the artificial leather on a car dashboard). One successful manufacturing process is the heating of the mould surface by infrared heaters located above the mould. We will describe one model of mould warming, as well as a method to calculate the heat radiation intensity on the mould surface in order to pinpoint the location of infrared heaters. During the calculation of heat radiation intensity across the mould surface, we will use experimental measured values for the heat radiation intensity from a sensor in proximity to an infrared heater. It is necessary to maintain approximately the same heat radiation intensity across the whole mould surface during warming process. The model described in this article allows us to optimize the infrared heaters' location for this purpose. In this way, we obtain the same material structure and color tone across the whole surface of an artificial leather. We will apply a genetic algorithm to optimize the heaters' location. A computational procedure of heat radiation intensity across mould surface and heaters location optimization was programmed in the language Matlab. The last chapter provides a practical example with a description of the solution.
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