塑化醋酸纤维素和微晶纤维素的绿色复合材料:马来酸醋酸纤维素对生物复合材料性能的影响

Isabel García-Castellanos, Debarshi Nath, Reshma Krishnan, Manjusri Misra* and Amar K. Mohanty*, 
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引用次数: 0

摘要

以微晶纤维素(MCC)和增塑型醋酸纤维素(pCA)为原料,设计了新型绿色复合材料。分析了MCC含量和马来酸酐接枝醋酸纤维素(MA-g-CA)对绿色复合材料性能的影响。绿色复合材料由高达15 wt %的MCC和不同浓度的MA-g-CA(2、4和7 wt %)组成。与纯pCA相比,含有15 wt % MCC的绿色复合材料的拉伸和弯曲模量分别增加了21%和5%,从而增强了复合材料的刚度和刚度。添加MA-g-CA后,其冲击强度和断裂伸长率分别比未添加MA-g-CA的材料提高22%和20%,表明其具有塑化作用。扫描电子显微镜证实,添加MCC到CA基体后,填充颗粒有足够的分散。在15 wt % MCC绿色复合材料中添加4% MA-g-CA,可以改善纤维-基质的粘附性。与整齐的基体相比,这提供了相当的拉伸强度和增强的拉伸模量。此外,添加7% ma -g- ca的样品显示出绿色复合材料的最高拉伸粘度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Green Composites from Plasticized Cellulose Acetate and Microcrystalline Cellulose: Effect of Maleated Cellulose Acetate on the Biocomposite Performance

Green Composites from Plasticized Cellulose Acetate and Microcrystalline Cellulose: Effect of Maleated Cellulose Acetate on the Biocomposite Performance

Novel green composites were engineered from microcrystalline cellulose (MCC) and plasticized cellulose acetate (pCA). The influence of the MCC content and effect of maleic anhydride-grafted cellulose acetate (MA-g-CA) on the performance of green composites were also analyzed. Green composites were developed with up to 15 wt % MCC with different concentrations of MA-g-CA (2, 4, and 7 wt %). Green composites with 15 wt % MCC showed an increase of 21% and 5% in tensile and flexural moduli, respectively, compared to neat pCA, leading to enhanced stiffness and rigidity of the composite material. After the addition of MA-g-CA, the impact strength and elongation at break increased by 22% and 20%, respectively, than their counterparts without MA-g-CA, indicating its plasticizing effect. Scanning electron microscopy confirmed an adequate dispersion of filler particles after the addition of MCC to the CA matrix. The addition of 4% MA-g-CA to 15 wt % MCC green composites exhibited an improved fiber-matrix adhesion. This gave comparable tensile strength and enhanced tensile modulus compared to the neat matrix. Also, the 7% MA-g-CA-added samples showed the highest extensional viscosity of the resulting green composites.

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