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Optimization of Maleinized Linseed Oil Loading as a Biobased Compatibilizer in Poly(Butylene Succinate) Composites with Almond Shell Flour

机译:杏仁壳粉聚丁二酸丁二醇酯复合材料中生物基增容剂的马来酸亚麻籽油负载量的优化

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摘要

Green composites of poly(butylene succinate) (PBS) were manufactured with almond shell flour (ASF) by reactive compatibilization with maleinized linseed oil *MLO) by extrusion and subsequent injection molding. ASF was kept constant at 30 wt %, while the effect of different MLO loading on mechanical, thermal, thermomechanical, and morphology properties was studied. Uncompatibilized PBS/ASF composites show a remarkable decrease in mechanical properties due to the nonexistent polymer‒filler interaction, as evidenced by field emission scanning electron microscopy (FESEM). MLO provides a plasticization effect on PBS/ASF composites but, in addition, acts as a compatibilizer agent since the maleic anhydride groups contained in MLO are likely to react with hydroxyl groups in both PBS end chains and ASF particles. This compatibilizing effect is observed by FESEM with a reduction of the gap between the filler particles and the surrounding PBS matrix. In addition, the Tg of PBS increases from −28 °C to −12 °C with an MLO content of 10 wt %, thus indicating compatibilization. MLO has been validated as an environmentally friendly additive to PBS/ASF composites to give materials with high environmental efficiency.
机译:聚(琥珀酸丁二酯)(PBS)的绿色复合材料是通过杏仁壳粉(ASF)与马来酸亚麻籽油* MLO的反应相容性通过挤出和随后的注塑成型而制造的。 ASF保持恒定在30 wt%,同时研究了不同MLO负载对机械,热,热机械和形态性能的影响。不相容的PBS / ASF复合材料由于不存在聚合物-填料相互作用而显示出机械性能的显着下降,这通过场发射扫描电子显微镜(FESEM)得以证明。 MLO对PBS / ASF复合材料具有增塑作用,但此外,由于MLO中所含的马来酸酐基团可能与PBS端链和ASF颗粒中的羟基反应,因此可作为增容剂。通过FESEM观察到这种相容效果,同时减小了填料颗粒与周围PBS基质之间的间隙。另外,PBS的Tg从-28℃增加到-12℃,MLO含量为10wt%,因此表明相容。 MLO已被证明是PBS / ASF复合材料的环保添加剂,可提供具有高环境效率的材料。

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