首页> 外文会议>Annual technical conference of the Society of Plastics Engineers;ANTEC 2011 >CRYSTALLIZATION OF HIGH-DENSITY POLYETHYLENE: THE EFFECT OF SHEAR UNIAXIAL EXTENSION FLOWS
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CRYSTALLIZATION OF HIGH-DENSITY POLYETHYLENE: THE EFFECT OF SHEAR UNIAXIAL EXTENSION FLOWS

机译:高密度聚乙烯的结晶:剪切和单轴延伸流的影响

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The final mechanical properties of a plastic product which is made of semi-crystalline polymers depend significantly on the molecular properties and the applied processing conditions. Particularly, the formation of flow induced structures via polymer crystallization plays a major role in defining the final attributes of the product. In this paper, the effects of shearing, uniaxial extension and temperature on the flow induced crystallization of a high-density polyethylene (HDPE) are examined using rheometry. Extensional flow found to be a stronger stimulus for polymer crystallization compared with that of simple shear. Generally, strain and strain rate found to enhance crystallization in both simple shear and elongation at temperatures around the meting point. At temperatures well above the melting point, polymer crystallized under elongational flow while there was no crystallization under simple shear flows.
机译:由半结晶聚合物制成的塑料产品的最终机械性能在很大程度上取决于分子性能和应用的加工条件。特别地,通过聚合物结晶形成的流致结构在确定产物的最终特性中起主要作用。在本文中,使用流变仪研究了剪切,单轴延伸和温度对高密度聚乙烯(HDPE)流动诱导结晶的影响。与简单剪切相比,拉伸流动对聚合物结晶具有更强的刺激作用。一般而言,发现应变和应变速率会在接近交汇点的温度下,通过简单剪切和伸长来增强结晶。在远高于熔点的温度下,聚合物在伸长流动下结晶,而在简单剪切流动下没有结晶。

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