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Structure-property relationship in film and blow molding type high-density polyethylene polymers from a slurry-process industrial plant

机译:浆料加工工业装置薄膜与吹塑型高密度聚乙烯聚合物的结构-性能关系

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摘要

In this study, the microstructural, flow, and mechanical properties of two commercially available high-density polyethylene (HDPE) samples with different particle sizes were quantified. Specifically, two different blow molding and film grade HDPEs produced by the same catalyst under different conditions were acquired in powder form after dryer section of an industrial plant. They were fractioned according to their particle sizes into six samples: = 500 mu m. According to sieve analysis, the film grade (D-50 = 304 mu m) had larger particle sizes related to the counterpart injection sample (D-50 = 289 mu m). A peak value in density, bulk density, viscosity molecular weight (M-v), melt flow index (MFI), and comonomer content characteristics was found in the particles with the diameter of 125-200 mu m in both samples, indicating extremely non-homogeneity of these HDPE samples. Chemical composition distribution (CCD) of the as received polymers as well as sieved fractions was surveyed via SSA or TREF analyses. The film sample represented lower MFI and density and higher M-v and comonomer content in all fractions, originated from different reactor conditions during the samples synthesis, which translate into improved mechanical properties comparing with the blow molding sample.
机译:在这项研究中,对两种不同粒径的市售高密度聚乙烯(HDPE)样品的微观结构、流动和力学性能进行了定量分析。具体而言,在某工业厂房的干燥段后,以粉末形式获得同一催化剂在不同条件下生产的两种不同的吹塑级和薄膜级HDPE。根据粒径将其分馏成六个样品:=500μm。根据筛分分析,薄膜级(D-50 = 304 μ m)与对应注射样品(D-50 = 289 μ m)相关的粒径较大。直径为125-200 μ m的颗粒在密度、堆积密度、黏度分子量(M-v)、熔体流动指数(MFI)和共聚单体含量特征方面均达到峰值,表明这些HDPE样品具有极不均匀性。通过SSA或TREF分析调查了接收到的聚合物和筛分的化学成分分布(CCD)。薄膜样品在所有馏分中都具有较低的MFI和密度以及较高的M-v和共聚单体含量,这是由于样品合成过程中的不同反应器条件所致,与吹塑样品相比,这转化为更好的机械性能。

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