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首页> 外文期刊>Journal of Applied Polymer Science >Blends of Ethylene 1-Octene Cokpolymer Synthesized by Ziegler-Natta and Metallocene Catalysts I. Thermal and Mechanical Properties
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Blends of Ethylene 1-Octene Cokpolymer Synthesized by Ziegler-Natta and Metallocene Catalysts I. Thermal and Mechanical Properties

机译:齐格勒-纳塔和茂金属催化剂合成的乙烯1-辛烯共聚物的共混物I.热力学性能

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The thermal, viscoelastic, and mechanical behaviors of three binary blends of ethylene 1-octene copolymer (EOC) regarding the melt index and density, one component made by Ziegler-Natta (FA and RF in abbreviation of the comercial name) and the other by metalocene catalysts (FM, EN and PL in abbreviation of the commercial name), have been investigated to understand molecular mechanism of the blends. Thermal stuides reveal that the two constituents in the three blends exclude one another during crystallization, implying a phase separation. Viscoelastic properties show a single #beta# or #gamma# transition in all the compositions, suggesting a miscibility in the amorphous region. The tensile modulus, yield stress, maximum strength at break, and elongation at break follow the rule of mixtures if the comonomer content does not differ too much. Otherwise, the modulus and yield stress are negatively deviated, wheras elongation at break is positively deviated from the weight-average value. The tensile properteis of film at yield and break in the machine direction is increased with an addition of FM in the FA + FM blend. Although all three blends form separate crystals in the crystalline state, a correlation exists between the mechanical properties and the density of EOCs.
机译:乙烯1-辛烯共聚物(EOC)的三种二元共混物的热,粘弹性和机械性能,与熔体指数和密度有关,一种组分由齐格勒-纳塔(Ziegler-Natta)制造(FA和RF均为商业名称的缩写),另一种由为了理解共混物的分子机理,已经研究了茂金属催化剂(FM,EN和PL,商品名的缩写)。热分析表明,三种共混物中的两种成分在结晶过程中相互排斥,这意味着相分离。粘弹性质在所有组合物中显示一个单一的#beta#或#gamma#过渡,表明在非晶区具有可混溶性。如果共聚单体的含量相差不大,则拉伸模量,屈服应力,最大断裂强度和断裂伸长率遵循混合物的规则。否则,模量和屈服应力会出现负偏差,而断裂时的胡拉伸长率会与重均值出现正偏差。通过在FA + FM共混物中添加FM,可以提高薄膜在屈服和纵向断裂时的拉伸特性。尽管所有三种共混物在结晶状态下形成单独的晶体,但机械性能与EOC的密度之间存在相关性。

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