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Shear-induced stereocomplex cylindrites in polylactic acid racemic blends: Morphology control and interfacial performance

机译:剪切诱导的聚乳酸外消旋共混物中的立体复合圆柱:形态控制和界面性能

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Realization of structural manipulation in stereocomplex (sc) polylactic acid holds the key to fully leverage its surpassing performance, such as heat resistance and mechanical properties. In this study, we investigated the evolution of crystalline morphology/structure of equimolar racemic blends under the quantitative shear field modulated by the pulling speed of glass fiber (GF). Shear-induced crystallization proceeded above the melting point of homocrystals, allowing the exclusive formation of sc crystallites. Compared to sparse nuclei dispersed around the static GF with no nucleation activity, numerous oriented sc row-nuclei appeared on the surface of pulled GF. With the rise of shear rate up to 160 s(-1), the number of row-nuclei was boosted prominently. As a result, interfacial sc cylindrites were fostered due to the preferential radial growth of lamellae outwards the GF axis. The integrity and contour of sc cylindrites could be regulated by the number of sc precursors and thus shear rate. Attractively, the conspicuous enhancement of interfacial adhesion and solvent resistance was attained by the presence of robust sc cylindrites. As confirmed by the single-fiber pull-out test, interfacial strength of the sheared sample (160 s(-1)) was over three times as large as that of the quiescent counterpart. Besides, the distortion due to the chloroform attack was significantly retarded for the film containing sc cylindrites in contrast to sc spherulites and homocrystal cylindrites. The current effort offers valuable instruction to fabricate the sc-PLA products with tailored crystalline morphology/structure. (C) 2018 Elsevier Ltd. All rights reserved.
机译:立体络合物(SC)聚乳酸结构操纵的实现使得能够充分利用其超越性能,例如耐热性和机械性能。在这项研究中,我们研究了通过玻璃纤维(GF)的拉速调节的定量剪切场下等摩尔外消旋混合物的晶体形态/结构的演变。剪切诱导的结晶在同种晶体的熔点上方进行,允许独占地形成SC微晶。与分散在静态GF周围的稀疏核相比,没有成核活性,在拉长的GF的表面上出现了许多取向的SC行核。随着剪切速率的升高,高达160秒(-1),行核的数量突出地提升。结果,由于GF轴线向外的LAMELLAE的优先径向生长,促进了界面SC圆柱形。 SC圆柱体的完整性和轮廓可以通过SC前体的数量来调节,因此剪切速率调节。引用鲁棒SC圆柱体的存在,获得了界面粘附和耐溶剂性的显着增强。如单纤维拉出试验所证实,剪切样品的界面强度(160s(-1))的差异为静态对应物的三倍。此外,对于含有Sc圆柱体的薄膜与Sc球晶膜和同晶圆柱体相反,氯仿攻击引起的畸变显着延迟。目前的努力提供了具有量身定制的晶体形态/结构的SC-PLA产品的宝贵指导。 (c)2018年elestvier有限公司保留所有权利。

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