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Effect of die exit geometry on internal die drool phenomenon during linear HDPE melt extrusion

机译:线性HDPE熔融挤出过程中模头出口几何形状对内部模头流口现象的影响

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摘要

In this work, the effect of die exit design on the internal die drool phenomenon occurring during extrusion of HDPE has been experimentally investigated. It has been revealed, that firstly, the effect of flared length and die exit angle on the internal die drool intensity during extrusion of HDPE has non-monotonic character and secondly, flared dies are more stabilizing in comparison with chamfered dies. It has been suggested that suppression mechanism of the internal die drool phenomenon through die exit modification can be understood through the balance between the melt pressureormal stresses at the die exit, adhesion at metal wall/flowing melt interface and extensional stress induced by the extrudate draw off, which can lead to flow situation at which low molecular weight species are effectively removed from the die exit region by the moving extrudate and only small portion of them remains at the die exit face.
机译:在这项工作中,已经通过实验研究了模头出口设计对HDPE挤出过程中发生的内部模头流口现象的影响。已经发现,首先,扩口长度和模具出口角对HDPE挤出过程中内部模具流口强度的影响具有非单调特征;其次,与倒角模具相比,扩口模具更稳定。有人提出,通过改变出口处的熔体压力/法向应力,金属壁/流动熔体界面处的粘附力和挤出物引起的拉伸应力之间的平衡,可以理解通过改变出口处的内部模具流口现象的抑制机理。排出,可能导致流动情况,在这种情况下,低分子量物质通过移动的挤出物有效地从模头出口区域中除去,而只有一小部分残留在模头出口面上。

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