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Controlling the Shape of Molecular Weight Distributions in Coordination Polymerization and Its Impact on Physical Properties

机译:配位聚合中分子量分布形状的控制及其对物理性能的影响

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High-density polyethylene (HDPE) is utilized in a multitude of commercial products worldwide due to its broad spectrum of physical properties and low production costs. Molecular weight and dispersity (Đ) are known to affect the tensile and rheological properties of HDPE, but little is known about the influence of the molecular weight distribution (MWD) shape on these properties. In this work, we investigate this matter through the temporal regulation of initiation in a living coordination—insertion polymerization of ethylene. This method provides precise control over the MWD shape which, in turn, offers a systematic study on the influence of MWD shape on the physical properties of HDPE. Through rheological testing, we observe a difference in complex viscosity and shear thinning with opposite MWD skew. However, tensile testing reveals that the MWD skew does not impact the strain at break, signifying the ability to influence HDPE processing without compromising material strength.
机译:高密度聚乙烯(HDPE)由于其广泛的物理性能和较低的生产成本而在全球范围内广泛用于各种商业产品中。分子量和分散度(Đ)会影响HDPE的拉伸和流变性能,但对分子量分布(MWD)形状对这些性能的影响知之甚少。在这项工作中,我们通过在活性配位中引发的时间调控(乙烯的插入聚合)来研究此问题。此方法可精确控制MWD形状,进而对MWD形状对HDPE物理性能的影响提供系统的研究。通过流变测试,我们观察到了随MWD偏斜而引起的复数粘度和剪切稀化的差异。但是,拉伸测试表明,MWD偏斜不会影响断裂应变,这表明可以在不影响材料强度的情况下影响HDPE加工。

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