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首页> 外文期刊>Macromolecular Symposia >Tailoring MWD of Bimodal Polyethylene in the Presence of Ziegler-Natta Catalyst
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Tailoring MWD of Bimodal Polyethylene in the Presence of Ziegler-Natta Catalyst

机译:在齐格勒-纳塔催化剂的存在下定制双峰聚乙烯的MWD

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Summary: Linear poly (ethylene-co-1-butene) was produced through two-step polymerization in one reactor using a Ziegler-Natta catalyst, where in the first step, low molecular weight homopolymer of ethylene in the presence of hydrogen and in the next step, high molecular weight copolymer of ethylene with 1-butene in the absence of hydrogen were produced. Molecular weight distribution of bimodal polyethylene was tailored through adjustment of polymerization time of each stage and hydrogen concentration of the first stage. Increasing hydrogen concentration shifted the molecular weight distribution curve to the lower molecular weights and broadened molecular weight distribution while interestingly increased high molecular weight incorporation of copolymer produced in the second stage due to increasing of reaction rate in the second step. To achieve bimodal molecular weight distribution, the polymerization times of the first and the second steps, which are highly dependent on the amount of hydrogen, were adjusted properly. The effects of the mentioned parameters on the processability as well as rheological properties of some samples were investigated. The rheological results showed shear thinning behavior of all specimens and confirmed the changes in molecular weight and molecular weight distribution. It was also demonstrated that the melt miscibility between low molecular weight and high molecular weight fractions improved with increasing of chains having very low molecular weight.
机译:简介:线性聚(乙烯-co-1-丁烯)是通过使用Ziegler-Natta催化剂在一个反应​​器中通过两步聚合反应生产的,第一步是在氢气存在下和在氢气中将低分子量乙烯均聚物下一步,在不存在氢的情况下,生产了乙烯与1-丁烯的高分子量共聚物。通过调节每个阶段的聚合时间和第一阶段的氢浓度来调整双峰聚乙烯的分子量分布。氢浓度的增加使分子量分布曲线移至较低的分子量并加宽了分子量分布,同时有趣的是,由于第二步中反应速率的提高,第二步中生产的共聚物的高分子量掺入也增加了。为了实现双峰分子量分布,适当调节第一步和第二步的聚合时间,这些时间高度依赖于氢的量。研究了上述参数对某些样品的可加工性和流变性的影响。流变结果表明所有样品的剪切稀化行为,并证实了分子量和分子量分布的变化。还表明,低分子量和高分子量部分之间的熔融混溶性随着具有非常低分子量的链的增加而改善。

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