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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science >A study of novel viscous dissipation measurement for polymer melts in microchannels
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A study of novel viscous dissipation measurement for polymer melts in microchannels

机译:用于微通道中聚合物熔体的新型粘性耗散测量的研究

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摘要

Studies on the rheological behaviour of polymer melts, flowing through microchannels, are complicated because a large number of factors affect the melt viscosity. One such factor, viscous dissipation, is investigated in the current work through a novel experimental technique that is used in determining the viscous dissipation of a polymer melt flowing through microchannels. Relative tests are conducted using melts of high-density polyethylene (HDPE) extruded through several capillary dies at different temperatures. Experimental results indicate that the temperature rises due to viscous dissipation increase with increasing shear rate. In addition, simulations considering viscous dissipation are carried out. The comparison of the experimental results with those predicted from the simulations at different melt temperatures indicates that the maximum temperature rise deviation is about 15 per cent. Therefore, the measurement method of viscous dissipation is available, which is helpful to better understand the flow characteristics of microchannels.
机译:流经微通道的聚合物熔体的流变行为的研究非常复杂,因为有许多因素会影响熔体粘度。在当前的工作中,通过一种新颖的实验技术研究了一个这样的因素,即粘性耗散,该技术用于确定流经微通道的聚合物熔体的粘性耗散。使用在不同温度下通过多个毛细管模挤出的高密度聚乙烯(HDPE)熔体进行相对测试。实验结果表明,由于粘性耗散引起的温度升高随着剪切速率的增加而增加。另外,进行了考虑粘性耗散的模拟。在不同的熔体温度下,将实验结果与模拟预测的结果进行比较,结果表明,最大温升偏差约为15%。因此,可以采用粘性耗散的测量方法,这有助于更好地了解微通道的流动特性。

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