首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >ORIENTATION DETERMINATION AND MORPHOLOGICAL STUDY OF HIGH DENSITY POLYETHYLENE (HDPE) EXTRUDED TUBULAR FILMS - EFFECT OF PROCESSING VARIABLES AND MOLECULAR WEIGHT DISTRIBUTION
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ORIENTATION DETERMINATION AND MORPHOLOGICAL STUDY OF HIGH DENSITY POLYETHYLENE (HDPE) EXTRUDED TUBULAR FILMS - EFFECT OF PROCESSING VARIABLES AND MOLECULAR WEIGHT DISTRIBUTION

机译:高密度聚乙烯(HDPE)挤出管状薄膜的方向测定和形态学研究-加工变量和分子量分布的影响

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The structure-property behaviour of high density polyethylene (HDPE) extruded tubular films having a blow up ratio of unity was investigated. Two different HDPE resins with identical (M) over bar(n) (14 600 g/mol) values but different distributions ((M) over bar(w)/(M) over bar(n) = 10.3, 15.1) were utilized in this extrusion process. Systematic changes were also made in the process variables-these being the melt temperature at the die exit, the quench height, which is the distance from the exit of the die to the cooling ring, the flow rate of the air through the cooling ring, and the film line speed. The morphological features and state of orientation of the extruded tubular films were examined by transmission electron microscopy (TEM), high resolution scanning electron microscopy (HSEM), birefringence, wide and small angle X-ray scattering studies (WAXS, SAXS), and linear infrared (i.r.) dichroism. A stacked lamellar or, in some cases, a fibril nucleated morphology was observed in the melt-extruded films by TEM. This technique clearly showed that the broader molecular weight samples possessed fibril nuclei that were not evident in the narrower molecular weight distribution films. The existence of the fibril nuclei was further confirmed from WAXS by the intense sharp spots superimposed on the equatorial (110), (200), and (020) reflections. The origin of this pronounced fibril nucleation was clearly believed to be due to the longer relaxation time behaviour of the broader distribution resin. The amorphous phase orientation and form birefringence for all films were found to be very small, and the observed birefringence arose almost exclusively from the crystalline phase. It was also found that the morphology and the orientation of the chain axis in the crystalline phase were particularly sensitive to the quench height and melt temperature for the narrower distribution HDPE films, but much less so for the broader distribution HDPE samples. Little dependence of structure/orientation was noted for either resin for the variables of the flow rate of the air through the cooling ring and the him line speed. These findings show the sensitivity of the molecular weight distribution to be a very important parameter, as are the specific processing variables of quench height and melt temperature, in determining the final solid state structure of the HDPE extruded tubular films. Copyright (C) 1996 Elsevier Science Ltd. [References: 62]
机译:研究了具有单一吹胀比的高密度聚乙烯(HDPE)挤出管状薄膜的结构性能行为。使用了两种不同的HDPE树脂,它们在bar(n)上具有相同的(M)(14 600 g / mol)值,但分布不同(bar(n)上的(M)/ bar(n)上的(M)= 10.3,15.1)在这个挤压过程中。工艺变量也进行了系统的更改-这些是模具出口处的熔体温度,淬火高度(即从模具出口到冷却环的距离,通过冷却环的空气流量,和电影线速度。通过透射电子显微镜(TEM),高分辨率扫描电子显微镜(HSEM),双折射,广角和小角X射线散射研究(WAXS,SAXS)和线性检验了挤出管状薄膜的形态特征和取向状态红外(ir)二向色性。通过TEM在熔融挤出的膜中观察到堆叠的层状或在某些情况下原纤维成核的形态。该技术清楚地表明,较宽的分子量样品具有原纤维核,这在较窄的分子量分布膜中不明显。 WAXS通过叠加在赤道(110),(200)和(020)反射上的强烈尖点进一步证实了原纤维核的存在。明显认为这种明显的原纤维成核的起源是由于较宽分布的树脂具有较长的弛豫时间行为。发现所有膜的无定形相取向和形式双折射都非常小,并且观察到的双折射几乎完全来自结晶相。还发现对于较窄分布的HDPE膜,结晶相中链轴的形态和取向对淬火高度和熔融温度特别敏感,而对于较宽分布的HDPE样品则更不敏感。对于通过冷却环的空气流量和线速度的变量,两种树脂对结构/取向的依赖性都很小。这些发现表明,分子量分布的敏感性是一个非常重要的参数,在确定HDPE挤出管状薄膜的最终固态结构时,淬火高度和熔体温度的特定加工变量也是如此。版权所有(C)1996 Elsevier ScienceLtd。[参考:62]

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