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首页> 外文期刊>The Journal of the Textile Institute >Heat transfer through glassfiber fabrics coated with silicone resin
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Heat transfer through glassfiber fabrics coated with silicone resin

机译:通过涂有硅树脂的玻璃纤维织物进行热传递

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摘要

Coatings can improve the performance of textiles, including flame retardants, water repellents and for heat resistance and weather resistance. Experimental methods are used normally to prepare heat insulation fabrics using coating technology. But there are many problems such as long processing time, high energy consumption, and the production of fumes. As computer technology develops, it is important to use numerical methods to predict the heat transfer performance of the coated fabrics. In this work, based on the yarn paths and their cross-sectional shapes, geometry models of the coated fabrics have been established. The finite element method was used to solve the heat transfer equations, and the numerical model was established to predict heat transfer performance. It was found that: (1) when comparing with the SEM images, the geometry model can represent well the structure and appearance of the coated fabric; (2) validation of the experimental data indicates that the numerical simulation model of heat transfer through the coated fabric is reliable and useful to predict the heat transfer performance, and the average relative deviation between the numerical data and experimental data was less than 7.0%; (3) when the thickness of the silicone coating layer is less than 0.50 mm, the temperature of the back face of fabric rapidly increased between 1 and 10 s, and it remained more than 510 degrees C as the heating time was extended. When the coating thickness is between 0.75 and 2 mm, the rising tendency of the temperature becomes gradually slower, and their temperatures remained 489, 455, 369 and 281 degrees C when the thickness of the coating layer is 0.75, 1.00, 1.50 and 2.00 mm, respectively.
机译:涂料可以改善纺织品的性能,包括阻燃剂,防水剂以及耐热性和耐候性。通常使用实验方法来使用涂层技术制备隔热织物。但是存在许多问题,例如处理时间长,能耗高以及烟雾的产生。随着计算机技术的发展,使用数值方法来预测涂层织物的传热性能非常重要。在这项工作中,基于纱线路径及其横截面形状,已建立了涂层织物的几何模型。利用有限元方法求解了传热方程,建立了数值模型来预测传热性能。发现:(1)当与SEM图像比较时,几何模型可以很好地反映涂层织物的结构和外观。 (2)实验数据的验证表明,通过涂层织物传热的数值模拟模型是可靠的,可用于预测传热性能,数值数据与实验数据之间的平均相对偏差小于7.0%; (3)当有机硅涂层的厚度小于0.50mm时,织物背面的温度在1至10s之间迅速升高,并且随着加热时间的延长,其保持在510℃以上。当涂层厚度在0.75和2mm之间时,温度的升高趋势逐渐变慢,并且当涂层的厚度为0.75、1.00、1.50和2.00mm时,它们的温度保持在489、455、369和281℃。 , 分别。

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