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High-density polyethylene pipe with high resistance to slow crack growth prepared via rotation extrusion

机译:通过旋转挤压制备的高密度聚乙烯管,具有高的抗慢速裂纹扩展能力

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Slow crack growth (SCG) is one failure principal mode in polyethylene (PE) pressure pipe applications. In the conventional extrusion process, the molecular chains in the plastic pipes are oriented along the axial direction, which are disadvantageous to their resistance to SCG. In order to change the orientation direction of molecules in the plastic pipe, a new rotation extrusion processing system was designed to extrude high-density polyethylene (HDPE) pipes, and a thorough research was done on the effect of the rotation speed on its microstructure and resistance to SCG during the rotation extrusion. The experimental results showed that when the die rotated during the extrusion process of PE pipes, the hoop stress exerted on the polymer melt could make the molecular orientation deviate from the axial direction, and therefore the consequent multi-axial orientation of molecular chains could be obtained. As a result, the PE pipe with better resistance to SCG was prepared. Compared to the PE pipe produced by the conventional extrusion, the crack initiation time of the PE pipe manufactured by the novel method increased from 27 to 57 h.
机译:缓慢的裂纹扩展(SCG)是聚乙烯(PE)压力管应用中的一种故障主要模式。在常规的挤出工艺中,塑料管中的分子链沿轴向取向,这不利于它们的抗SCG性。为了改变塑料管中分子的取向方向,设计了一种新型的旋转挤出加工系统来挤出高密度聚乙烯(HDPE)管,并对旋转速度对其微观结构和结构的影响进行了深入研究。旋转挤压过程中对SCG的抵抗力。实验结果表明,在聚乙烯管材挤出过程中,当模具旋转时,施加在聚合物熔体上的环向应力会使分子取向偏离轴向,从而得到分子链的多轴取向。 。结果,制备了具有更好的耐SCG性的PE管。与通过常规挤出生产的PE管相比,通过新方法生产的PE管的裂纹萌生时间从27小时增加到57小时。

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