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Role of Wood Fibers in Tuning Dynamic Rheology Non-Isothermal Crystallization and Microcellular Structure of Polypropylene Foams

机译:木纤维在调节聚丙烯泡沫的动态流变非等温结晶和微孔结构中的作用

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摘要

Microcellular polypropylene (PP)/wood fiber composite foams were fabricated via batch foaming assisted by supercritical CO2 (scCO2). Effects of wood fibers on rheology, crystallization, and foaming behaviors of PP were comprehensively investigated. The obtained results showed that the incorporation of wood fibers increased the complex viscosity and the storage modulus of the PP matrix. Jeziorny’s model for non-isothermal crystallization kinetics indicated that wood fibers did not change the crystal growth. However, the crystallization rate of the PP matrix was decreased to a certain extent with increasing wood fiber loadings. The wood fiber exerts a noticeable role in improving the cell density and reducing the cell size, despite decreasing the expansion ratio. Interestingly, a “small-sized cells to large-sized cells” gradient cell structure was found around the wood fibers, implying cell nucleation was induced at the interface between wood fiber and PP matrix. When wood fiber loadings were specifically increased, a desirable microcellular structure was obtained. However, further increasing the wood fiber loadings deteriorated the cell structure. Moreover, the crystallinity of the composite foams initially decreased and then slightly increased with increasing wood fiber loadings, while the crystal size decreased.
机译:微孔聚丙烯(PP)/木纤维复合泡沫是通过在超临界二氧化碳(scCO2)的辅助下分批发泡而制备的。全面研究了木纤维对聚丙烯流变学,结晶和发泡行为的影响。所得结果表明,木纤维的掺入增加了PP基体的复数粘度和储能模量。 Jeziorny的非等温结晶动力学模型表明,木纤维不会改变晶体的生长。但是,随着木纤维含量的增加,PP基体的结晶速率有所降低。尽管降低了膨胀比,木纤维在改善孔密度和减小孔尺寸方面仍发挥着显著作用。有趣的是,在木纤维周围发现了“小细胞到大细胞”的梯度细胞结构,这暗示了在木纤维和PP基质之间的界面上诱导了细胞成核。当木纤维的含量特别增加时,获得了所需的微孔结构。但是,进一步增加木纤维的含量会使泡孔结构恶化。此外,随着木材纤维含量的增加,复合泡沫的结晶度开始降低,然后略有增加,而晶体尺寸减小。

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