首页> 美国卫生研究院文献>Materials >The Effect of Varying Almond Shell Flour (ASF) Loading in Composites with Poly(Butylene Succinate (PBS) Matrix Compatibilized with Maleinized Linseed Oil (MLO)
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The Effect of Varying Almond Shell Flour (ASF) Loading in Composites with Poly(Butylene Succinate (PBS) Matrix Compatibilized with Maleinized Linseed Oil (MLO)

机译:马来酸亚麻籽油(MLO)增容的聚丁二酸丁二酯(PBS)基质在复合材料中改变杏仁壳粉(ASF)含量的影响

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摘要

In this work poly(butylene succinate) (PBS) composites with varying loads of almond shell flour (ASF) in the 10–50 wt % were manufactured by extrusion and subsequent injection molding thus showing the feasibility of these combined manufacturing processes for composites up to 50 wt % ASF. A vegetable oil-derived compatibilizer, maleinized linseed oil (MLO), was used in PBS/ASF composites with a constant ASF to MLO (wt/wt) ratio of 10.0:1.5. Mechanical properties of PBS/ASF/MLO composites were obtained by standard tensile, hardness, and impact tests. The morphology of these composites was studied by field emission scanning electron microscopy—FESEM) and the main thermal properties were obtained by differential scanning calorimetry (DSC), dynamical mechanical-thermal analysis (DMTA), thermomechanical analysis (TMA), and thermogravimetry (TGA). As the ASF loading increased, a decrease in maximum tensile strength could be detected due to the presence of ASF filler and a plasticization effect provided by MLO which also provided a compatibilization effect due to the interaction of succinic anhydride polar groups contained in MLO with hydroxyl groups in both PBS (hydroxyl terminal groups) and ASF (hydroxyl groups in cellulose). FESEM study reveals a positive contribution of MLO to embed ASF particles into the PBS matrix, thus leading to balanced mechanical properties. Varying ASF loading on PBS composites represents an environmentally-friendly solution to broaden PBS uses at the industrial level while the use of MLO contributes to overcome or minimize the lack of interaction between the hydrophobic PBS matrix and the highly hydrophilic ASF filler.
机译:在这项工作中,通过挤压和随后的注模制造了杏仁壳粉(ASF)含量在10–50 wt%之间变化的聚丁二酸丁二酯(PBS)复合材料,从而证明了这些组合制造工艺的可行性,直至50重量%的ASF。来自植物油的增容剂,马来化亚麻子油(MLO),用于ASF与MLO(wt / wt)的恒定比率为10.0:1.5的PBS / ASF复合材料中。 PBS / ASF / MLO复合材料的机械性能通过标准的拉伸,硬度和冲击试验获得。通过场发射扫描电子显微镜(FESEM)研究了这些复合材料的形貌,并通过差示扫描量热法(DSC),动态机械热分析(DMTA),热力学分析(TMA)和热重分析(TGA)获得了主要的热性能。 )。随着ASF载荷的增加,由于ASF填料的存在和MLO提供的增塑作用,可以检测到最大抗拉强度的下降,这也归因于MLO中所含的琥珀酸酐极性基团与羟基的相互作用而提供了增容作用。在PBS(羟基末端基团)和ASF(纤维素中的羟基基团)中都存在。 FESEM研究表明,MLO对将ASF颗粒嵌入PBS基质具有积极的作用,从而导致平衡的机械性能。 PBS复合材料上ASF含量的变化代表了一种环境友好的解决方案,可在工业水平上扩展PBS的使用,而MLO的使用有助于克服或最小化疏水性PBS基质与高亲水性ASF填料之间相互作用的缺乏。

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