首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Towards polylactide/core-shell rubber blends with balanced stiffness and toughness via the formation of rubber particle network with the aid of stereocomplex crystallites
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Towards polylactide/core-shell rubber blends with balanced stiffness and toughness via the formation of rubber particle network with the aid of stereocomplex crystallites

机译:通过借助于立体络合物结晶,通过形成橡胶粒子网络,通过形成橡胶粒子网络来朝向聚乳糖/芯 - 壳橡胶混合均衡刚度和韧性

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摘要

As the most promising bio-derived and biodegradable polymers with tremendous application potential, the practical application of poly(L-lactide) (PLLA) has been severely restricted by its inherent brittleness. Unfortunately, blending with various rubbers can substantially enhance the toughness of PLLA, but usually causes a significant deterioration in mechanical strength and modulus. In this work, taking novel PLLA/core-shell rubber (CSR) blends as an example, we describe a facile and robust strategy to obtain good stiffness-toughness balance by promoting the networking of CSR particles within PLLA matrix with the aid of stereocomplex (SC) crystallites. To do this, small amounts (5-20 wt%) of poly(D-lactide) (PDLA) were incorporated into the blends through simple melt-blending. The results demonstrate that the CSR particles can be uniformly dispersed in PLLA matrix due to the good interfacial compatibility, but the stereocomplex (SC) crystallites formed between the incorporated PDLA and PLLA matrix chains induces the organization of the CSR particles into a network-like structure in the matrix. Compared with the well-dispersed structure, the network-like structure can endow the PLLA/CSR blends with dramatically enhanced impact toughness, without compromising their mechanical strength and modulus, indicating a marvelous balance between the stiffness and toughness. Furthermore, the elongation at break of the blends is also enhanced greatly. These interesting findings suggest that the formation of SC crystallites could provide a promising avenue for fabricating CSR particles toughened PLLA blends with balanced stiffness-toughness.
机译:作为具有巨大应用潜力的最有前景的生物衍生和可生物降解的聚合物,聚(L-丙交酯)(PLLA)的实际应用受其固有的脆性严重限制。不幸的是,与各种橡胶混合可以大大提高PLLA的韧性,但通常会导致机械强度和模量显着恶化。在这项工作中,采用新型PLLA /核 - 壳橡胶(CSR)混合物作为示例,我们描述了一种容易和稳健的策略,通过借助于立体复合物(所述)通过促进PLLA矩阵内的CSR颗粒网络进行良好的僵硬 - 韧性平衡( sc)微晶。为此,通过简单的熔融共混将少量(5-20​​wt%)聚(5-20​​wt%)聚(D-丙交酯)(PDLA)掺入共混物中。结果表明,由于良好的界面相容性,CSR颗粒可以均匀地分散在PLLA基质中,但在掺入的PDLA和PLLA基质链之间形成的立体络合物(SC)结晶诱导CSR颗粒的组织成网络状结构在矩阵中。与井分散的结构相比,网络状结构可以赋予PLLA / CSR混合物,显着增强的冲击韧性,而不会影响其机械强度和模量,表明刚度和韧性之间的奇妙平衡。此外,共混物的断裂伸长率也大大提高。这些有趣的研究结果表明,SC结晶的形成可以提供具有平衡刚度 - 韧性的CSR颗粒增韧PLLA共混物的承诺途径。

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