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Worm Melt Fracture and Fast Die Build-up at High Shear Rates in Extrusion Blow Molding of Large Drums

机译:蜗杆熔体骨折和快速模具在大型鼓挤出吹塑成型中的高剪切速率

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In the extrusion blow molding process of high density polyethylene (HDPE) for making of large size drums, string-like defects, which are referred to as worm melt fracture in the industry, are often observed on the extrudate surface. Such string-like defects in various shapes and sizes are observed in capillary extrusion at very high shear rates after the slip-stick transition. The HDPE resin with broader molecular weight distribution (MWD) exhibits a greater degree of worm melt fracture while the narrow MWD PE resin, which has higher slip velocity and a uniform slip layer, shows a lesser degree of worm melt fracture. It is hypothesized that the worm melt fracture is related to fast die build-up and cohesive slip layer, a failure within the polymer melts at an internal surface. If the cohesive slip layer at an internal surface emerges out from the die, it can be attached on the surface of extrudate as string-like defects, the worm melt fracture. The resin having more small chains and lower plateau modulus can be easier to have such an internal failure and consequently exhibit more "worm" defects.
机译:在高密度聚乙烯(HDPE)的挤出吹塑过程中,用于制造大尺寸的鼓,在挤出物表面上通常观察到在工业中被称为蠕虫熔体骨折的串状缺陷。在滑动杆转换后,在非常高的剪切速率下在毛细管挤出中观察到各种形状和尺寸的这种串状缺陷。具有较宽分子量分布(MWD)的HDPE树脂在具有更高的滑移速度和均匀的滑块的窄MWD PE树脂上表现出更大程度的蠕虫熔体骨折显示出较小程度的蠕虫熔体骨折。假设蠕虫熔体骨折与快速模具堆积和内聚滑移层有关,聚合物内的破坏在内表面熔化。如果内表面上的内聚滑动层出现在模具中,则可以将其附着在挤出物的表面上,作为串状缺陷,蠕虫熔体骨折。具有更多小链子和更低的平台模量的树脂可以更容易具有这种内部故障,因此表现出更多“蠕虫”缺陷。

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