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反应性核壳颗粒的接枝改性以增强聚乳酸的增韧能力

Grafting Modification of the Reactive Core-Shell Particles to Enhance the Toughening Ability of Polylactide.

作者信息

Li Zhaokun, Song Shixin, Zhao Xuanchen, Lv Xue, Sun Shulin

机构信息

Engineering Research Center of Synthetic Resin and Special Fiber, Ministry of Education, Changchun University of Technology, Changchun 130012, China.

出版信息

Materials (Basel). 2017 Aug 16;10(8):957. doi: 10.3390/ma10080957.

Abstract

In order to overcome the brittleness of polylactide (PLA), reactive core-shell particles (RCS) with polybutadiene as core and methyl methacrylate-co-styrene-co-glycidyl methacrylate as shell were prepared to toughen PLA. Tert-dodecyl mercaptan (TDDM) was used as chain transfer agent to modify the grafting properties (such as grafting degree, shell thickness, internal and external grafting) of the core-shell particles. The introduction of TDDM decreased the grafting degree, shell thickness and the T of the core phase. When the content of TDDM was lower than 1.15%, the RCS particles dispersed in the PLA matrix uniformly-otherwise, agglomeration took place. The addition of RCS particles induced a higher cold crystallization temperature and a lower melting temperature of PLA which indicated the decreased crystallization ability of PLA. Dynamic mechanical analysis (DMA) results proved the good miscibility between PLA and the RCS particles and the increase of TDDM in RCS induced higher storage modulus of PLA/RCS blends. Suitable TDDM addition improved the toughening ability of RCS particles for PLA. In the present research, PLA/RCS-T4 (RCS-T4: the reactive core-shell particles with 0.76 wt % TDDM addition) blends displayed much better impact strength than other blends due to the easier cavitation/debonding ability and good dispersion morphology of the RCS-T4 particles. When the RCS-T4 content was 25 wt %, the impact strength of PLA/RCS-T4 blend reached 768 J/m, which was more than 25 times that of the pure PLA.

摘要

为了克服聚乳酸(PLA)的脆性,制备了以聚丁二烯为核、甲基丙烯酸甲酯-苯乙烯-甲基丙烯酸缩水甘油酯为壳的反应性核壳粒子(RCS)来增韧PLA。使用叔十二烷基硫醇(TDDM)作为链转移剂来改性核壳粒子的接枝性能(如接枝度、壳厚度、内外接枝)。TDDM的引入降低了接枝度、壳厚度和核相的玻璃化转变温度。当TDDM含量低于1.15%时,RCS粒子均匀分散在PLA基体中,否则会发生团聚。RCS粒子的加入导致PLA的冷结晶温度升高而熔点降低,这表明PLA的结晶能力下降。动态力学分析(DMA)结果证明了PLA与RCS粒子之间具有良好的相容性,并且RCS中TDDM含量的增加导致PLA/RCS共混物的储能模量提高。合适的TDDM添加量提高了RCS粒子对PLA的增韧能力。在本研究中,PLA/RCS-T4(RCS-T4:添加0.76 wt%TDDM的反应性核壳粒子)共混物表现出比其他共混物更好的冲击强度,这归因于RCS-T4粒子更容易发生空化/脱粘的能力和良好的分散形态。当RCS-T4含量为25 wt%时,PLA/RCS-T4共混物的冲击强度达到768 J/m,是纯PLA的25倍多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3ad/5578323/8e83efd69ceb/materials-10-00957-g001.jpg

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