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摩尔质量对聚丙烯长链支化的影响。

Influence of the Molar Mass on Long-Chain Branching of Polypropylene.

作者信息

Kamleitner Florian, Duscher Bernadette, Koch Thomas, Knaus Simone, Schmid Klaus, Archodoulaki Vasiliki-Maria

机构信息

Institute of Material Science and Technology, TU Wien, Getreidemarkt 9, Vienna 1060, Austria.

Institute of Applied Synthetic Chemistry, TU Wien. Getreidemarkt 9, Vienna 1060, Austria.

出版信息

Polymers (Basel). 2017 Sep 12;9(9):442. doi: 10.3390/polym9090442.

Abstract

Long-chain branching (LCB) with peroxydicarbonates (PODIC) is known as a suitable post-reactor process to introduce strain-hardening behaviour and an increase of melt strength to a linear polypropylene (PP). This opens up new possibilities for processing and therefore application. Especially in the case of adding value to PP post-consumer waste, LCB is a promising approach. LCB takes place by a combination of chain scission and recombination after radical activation of the PP macromolecule. However, chemical modification of post-consumer waste is challenging because of the inhomogeneous composition and the manifold number of PP grades. The influence of the molar mass of the linear PP precursor on this reaction was studied with different PP grades ranging from extrusion grade to injection moulding grade. To exclude side effects, all PP grades had similar polydispersity indices. A PP with higher molar mass undergoes significant chain scission during the LCB process compared to a PP with low molar mass for injection moulding. Therefore, the two grades differ significantly in their branching number, which influences their behaviour in elongational flow.

摘要

用过氧二碳酸酯(PODIC)进行长链支化(LCB)是一种合适的后反应器工艺,可将应变硬化行为和熔体强度的增加引入线性聚丙烯(PP)中。这为加工以及应用开辟了新的可能性。特别是在为消费后聚丙烯废料增值的情况下,长链支化是一种很有前景的方法。长链支化是在PP大分子自由基活化后通过断链和重组相结合的方式发生的。然而,由于消费后废料的成分不均匀以及PP等级种类繁多,对其进行化学改性具有挑战性。使用从挤出级到注塑级的不同PP等级研究了线性PP前驱体的摩尔质量对该反应的影响。为排除副作用,所有PP等级具有相似的多分散指数。与用于注塑的低摩尔质量PP相比,具有较高摩尔质量的PP在LCB过程中会发生显著的断链。因此,这两个等级在支化数上有显著差异,这会影响它们在拉伸流动中的行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5863/6418880/4a57ae4ad459/polymers-09-00442-g001.jpg

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