Effects of ethylene‐octene copolymer and ethylene‐propylene copolymer on crystallization, morphology, and foaming properties of ethylene‐vinyl acetate copolymer

IF 3.2 4区 工程技术 Q2 ENGINEERING, CHEMICAL
Yuanxia Wang, Qi Hao, Cun‐Ying Zou, Nan Bai, Qun‐Feng Su, Chen‐Guang Zhang, Yu‐Jiang Wan, Jia‐Qi Shen, Li‐Xin Song, Xian‐Liang Li, Li‐Zhi Liu
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引用次数: 0

Abstract

Ethylene‐octene copolymer (EOC, three EOCs with different octene content used in this study) and propene‐ethylene copolymer (EPC, three EPCs with different ethylene content used in this study) can have effects on the crystallization dynamics, crystal structure, and foaming properties of ethylene‐vinyl acetate copolymer (EVA). For unfoamed EVA/EOC and unfoamed EVA/EPC blends, both EVA/EOC and EVA/EPC blends show phase separation structure. The foam cells in EVA/EOC blends have better uniformity compared to those in EVA/EPC blends, which result from the better compatibility of EVA and EOC than EVA and EPC obtained from the morphology analysis. For the blends with different crystallization ability of EOC or EPC, the blends with lower crystallinity has more uniform cell distribution than blends with higher crystallinity, due to the crystallization zone cause heterogeneous crosslinking and foaming of the blend. Both EOC and EPC can impart higher elasticity to EVA foamed materials. EOC was found to be more suitable for blending with EVA for foamed materials, offering the potential to obtain EVA/EOC foamed materials with excellent performance.Highlights Ethylene‐octene copolymer with higher octene content has better effect on foaming property of ethylene‐vinyl acetate copolymer than ethylene‐propylene copolymer. Ethylene‐propylene copolymer can decrease the foaming temperature of ethylene‐vinyl acetate copolymer. A mechanism of foaming for ethylene‐vinyl acetate copolymer/semi‐crystallized polymer blends is proposed. Achieved in‐depth understanding of structure–property relationship about ethylene‐vinyl Acetate copolymer/polyolefin elastomer foamed material.
乙烯-辛烯共聚物和乙烯-丙烯共聚物对乙烯-醋酸乙烯共聚物的结晶、形态和发泡特性的影响
乙烯-辛烯共聚物(EOC,本研究中使用了三种辛烯含量不同的 EOC)和丙烯-乙烯共聚物(EPC,本研究中使用了三种乙烯含量不同的 EPC)会对乙烯-醋酸乙烯共聚物(EVA)的结晶动力学、晶体结构和发泡性能产生影响。对于未发泡的 EVA/EOC 和未发泡的 EVA/EPC 混合物,EVA/EOC 和 EVA/EPC 混合物都显示出相分离结构。与 EVA/EPC 共混物相比,EVA/EOC 共混物中的泡沫单元具有更好的均匀性,这是因为从形态分析中得出 EVA 和 EOC 的相容性比 EVA 和 EPC 的相容性更好。对于 EOC 或 EPC 结晶能力不同的共混物,结晶度较低的共混物比结晶度较高的共混物具有更均匀的单元分布,这是由于结晶区会导致共混物的异质交联和发泡。EOC 和 EPC 都能赋予 EVA 发泡材料更高的弹性。要点 辛烯含量较高的乙烯-辛烯共聚物对乙烯-醋酸乙烯酯共聚物发泡性能的影响优于乙烯-丙烯共聚物。乙烯-丙烯共聚物可以降低乙烯-醋酸乙烯共聚物的发泡温度。提出了乙烯-醋酸乙烯共聚物/半结晶聚合物共混物的发泡机理。深入理解了乙烯-醋酸乙烯共聚物/聚烯烃弹性体发泡材料的结构-性能关系。
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来源期刊
Polymer Engineering and Science
Polymer Engineering and Science 工程技术-高分子科学
CiteScore
5.40
自引率
18.80%
发文量
329
审稿时长
3.7 months
期刊介绍: For more than 30 years, Polymer Engineering & Science has been one of the most highly regarded journals in the field, serving as a forum for authors of treatises on the cutting edge of polymer science and technology. The importance of PE&S is underscored by the frequent rate at which its articles are cited, especially by other publications - literally thousand of times a year. Engineers, researchers, technicians, and academicians worldwide are looking to PE&S for the valuable information they need. There are special issues compiled by distinguished guest editors. These contain proceedings of symposia on such diverse topics as polyblends, mechanics of plastics and polymer welding.
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