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具有相似马来酸酐接枝度的不同聚烯烃的结晶、结构与性能

Crystallization, Structures, and Properties of Different Polyolefins with Similar Grafting Degree of Maleic Anhydride.

作者信息

Wang Ying, Shi Ying, Shao Wenjun, Ren Yi, Dong Wanyu, Zhang Farao, Liu Li-Zhi

机构信息

Advanced Manufacturing Institute of Polymer Industry, Shenyang University of Chemical Technology, Shenyang 110142, China.

Ningbo MaterChem Technology Co, Ltd., Ningbo 315830, China.

出版信息

Polymers (Basel). 2020 Mar 18;12(3):675. doi: 10.3390/polym12030675.

Abstract

Maleic anhydride (MAH) grafting to different polyolefins with similar grafting degree can have different effects on crystallization, crystal structure, and mechanical and thermal properties. The grafting leads to a smaller crystal size, less ordered lamellar structure, and a shorter long period for HDPE, LLDPE, and PP. The grafting makes PP lamellar packing less ordered the most and almost no effect to LLDPE. The grafting does not have that much impact on the crystallization ability of the HDPE, LLDPE, and HDPE/PP blend, but appreciably reduces the crystalline ability of PP--MAH, due to a dramatical drop in its molecular weight during the grafting process. As a result, the grafting makes PP a very brittle material with a lowered average melting point than the corresponding neat PP, but the grafting has almost no effect on elongation at break for LLDPE and some effect on HDPE (decreased by one-third). However, the PP degradation due to MAH grafting can be avoided in the presence of PE component, i.e., making the grafting of PP and PE at the same time with HDPE/PP blend. The grafted HDPE/PP blend shows a significantly improved compatibility, which leads to overall appreciably better mechanical properties than the neat HDPE/PP blend.

摘要

马来酸酐(MAH)接枝到具有相似接枝度的不同聚烯烃上,对结晶、晶体结构以及力学和热性能可能会产生不同的影响。对于高密度聚乙烯(HDPE)、线性低密度聚乙烯(LLDPE)和聚丙烯(PP)而言,接枝会导致晶体尺寸变小、片层结构有序度降低以及长周期变短。接枝使PP的片层堆积无序度最大,而对LLDPE几乎没有影响。接枝对HDPE、LLDPE以及HDPE/PP共混物的结晶能力影响不大,但会显著降低PP-MAH的结晶能力,这是由于接枝过程中其分子量急剧下降所致。结果,接枝使PP成为一种非常脆的材料,其平均熔点低于相应的纯PP,但接枝对LLDPE的断裂伸长率几乎没有影响,对HDPE有一定影响(降低了三分之一)。然而,在存在PE组分的情况下,即同时对HDPE/PP共混物进行PP和PE的接枝,可以避免由于MAH接枝导致的PP降解。接枝后的HDPE/PP共混物显示出显著改善的相容性,这使得其整体力学性能明显优于纯HDPE/PP共混物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4f8/7182872/2e9fd2bf8cbd/polymers-12-00675-g001.jpg

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