增容
材料科学
三元运算
复合材料
低密度聚乙烯
聚乙烯
聚合物混合物
聚合物
工作(物理)
艾氏冲击强度试验
化学工程
粘附
共聚物
形态学(生物学)
马来酸酐
复配
塑料废料
聚对苯二甲酸乙二醇酯
纳米复合材料
作者
Guohua Wu,Xin Qi,Tianqi Jin,Hengti Wang,Yongjin Li,Lijun Ye
标识
DOI:10.1002/mame.202500422
摘要
ABSTRACT Efficient recycling of mixed plastic waste remains challenging due to the intrinsic immiscibility of constituent polymers, which compromises mechanical performance. Here, a synergistic compatibilization strategy combining reactive maleic anhydride–grafted low‐density polyethylene (LDPE‐ g ‐MA) and non‐reactive styrene–ethylene–butadiene–styrene (SEBS) is demonstrated to enhance interfacial adhesion and mechanical properties of LDPE/PS/PA6 blends. The cooperative action of LDPE‐ g ‐MA and SEBS minimized mutual interference and improved compatibilization efficiency at both LDPE/PA6 and LDPE/PS interfaces. In the LDPE/PS/PA6 (40/30/30) blend, the bicontinuous LDPE/PS morphology with PA6 encapsulated in PS transformed into an LDPE matrix containing salami‐like core–shell domains with mixed PS/PA6 cores upon addition of 5 wt.% LDPE‐ g ‐MA and 5 wt.% SEBS. In the LDPE/PS/PA6 (70/15/15) blend, the PA6@PS domains evolved into distinct, refined salami‐like structures with inner PS cores and interfacial localized PA6 domains upon addition of 3 wt.% LDPE‐ g ‐MA and 3 wt.% SEBS, increasing notched impact strength from 3.3 to 18.2 kJ·m −2 . In the LDPE/PS/PA6 (15/15/70) blend, LDPE@PS core–shell domains converted to salami‐like PS@LDPE structures with 3 wt.% LDPE‐ g ‐MA and 4.5 wt.% SEBS, enhancing impact strength from 2.9 to 11.7 kJ·m −2 . This work offers an effective, industrially relevant route to tailor morphology and upgrade the performance of heterogeneous plastic waste toward sustainable recycling.
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