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Influence of coextrusion die channel height on interfacial instability of low density polyethylene melt flow

机译:共挤模头通道高度对低密度聚乙烯熔体流动界面不稳定性的影响

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摘要

The effect of side stream channel height on flow stability in 30° coextrusion geometries was investigated. The studies were conducted on a Dow LD150R low density polyethylene melt using a single extruder to feed a flow cell in which the delivered melt stream was split before, and rejoined after, a divider plate in a slit die. Wave type interfacial instability occurred at critical stream thickness ratios. Reducing the side stream channel height broadened the layer ratio operating range before the onset of interfacial instability, therefore improving process stability. Stress fields were quantified and used to validate principal stress differences of numerically modelled flow. Stress field features promoting interfacial instability in each of the die geometries were identified. Interfacial instability resulted when the stress gradient across the interface was asymmetric and accompanied by a non-monotonic decay in the stress along the interface from its inception.
机译:研究了侧流通道高度对30°共挤几何形状中流动稳定性的影响。使用单台挤出机在Dow LD150R低密度聚乙烯熔体上进行研究,以向流动池供料,在流动池中,输送的熔体流在分流板中的分流板之前在分流板中分裂,然后在分流板中重新结合。波型界面不稳定性在临界流厚度比处发生。降低侧流通道的高度可在界面不稳定开始之前拓宽层比操作范围,从而提高工艺稳定性。应力场被量化,并用于验证数值模拟流的主应力差。确定了在每个模具几何形状中促进界面不稳定性的应力场特征。当界面上的应力梯度不对称并且伴随着从界面开始的沿界面的应力的非单调衰减时,就会导致界面不稳定性。

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