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Setup and Test of a Laser Doppler Velocimeter for Investigations of Flow Behaviour of Polymer Melts

机译:激光多普勒测速仪的设置和测试,用于研究聚合物熔体的流动行为

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摘要

The flow behaviour of a low-density polyethylene melt is investigated in a specifically developed flow channel by means of Laser Doppler Velocimetry (LDV). The used flow channel is a slit die with a planar contraction of 14:1. The investigation of the velocity fields was performed in the steady state of flow. The optics of the LDV system as well as the used frequency analyser proved to be reliable for measurements of velocities down to 250 #mu#m/s.By adding TiO2 tracer particles to the pellets the signal quality as well as the signal frequency were improved. It is demonstrated that the Laser Doppler Velocimeter is suited to detect velocities of polymer melts with an error of a few per cent by comparing the measured volume flow rate to the directly determined mass flow rate.Using simple fluid mechanics the viscosity function is obtained by measuring only one velocity profile within the fully developed flow in the slit die. Over a wide range of shear rates the viscosity function obtained via LDV measurement corresponds with the viscosity function which was determined by the classical mass-flow-rate method. Both resulting viscosity functions were additionally checked by performing measurements with a capillary rheometer.The LDV setup described in this paper is a powerful experimental tool to investigate the flow behaviour of polymer melts. Its accuracy and the high spatial and temporal resolution opens a way to get more quantitative insight into the flow of polymer melts and to check the validity of model calculations.
机译:通过激光多普勒测速仪(LDV)在专门开发的流动通道中研究了低密度聚乙烯熔体的流动行为。所使用的流动通道是具有14:1平面收缩率的狭缝模具。速度场的研究是在流动的稳态下进行的。 LDV系统的光学器件以及所使用的频率分析仪经证实可可靠地测量低至250#mu#m / s的速度。通过在颗粒中添加TiO2示踪剂颗粒,信号质量和信号频率均得到改善。通过将测量的体积流量与直接确定的质量流量进行比较,表明激光多普勒测速仪适用于检测聚合物熔体的速度,误差为百分之几。使用简单的流体力学,通过测量获得粘度函数狭缝模头中充分展开的流动内只有一个速度曲线。在很宽的剪切速率范围内,通过LDV测量获得的粘度函数与通过经典质量流率方法确定的粘度函数相对应。通过使用毛细管流变仪进行测量,还检查了这两个所得的粘度函数。本文描述的LDV设置是研究聚合物熔体流动行为的强大实验工具。它的准确性和高的时空分辨率开辟了一条途径,可以使人们更定量地了解聚合物熔体的流动并检查模型计算的有效性。

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