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首页> 外文期刊>Journal of Applied Polymer Science >Kenaf fiber/soy protein based biocomposites modified with poly(carboxylic acid) resin
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Kenaf fiber/soy protein based biocomposites modified with poly(carboxylic acid) resin

机译:聚羧酸树脂改性的红麻纤维/大豆蛋白基生物复合材料

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In this research, three different types of biocomposites were made from kenaf fiber/soy protein, kenaf fiber/DS 3530, and kenaf fiber/soy protein/DS 3530. Fourier transform infrared spectra of the biocomposites showed that there were chemical reactions among the kenaf fiber, soy flour, and BASF Acrodur resin. The hot-pressing time had a significant effect on the flexural properties and density of both the kenaf fiber/soy flour composites and kenaf fiber/BASF Acrodur resin composites. However, the effect was opposite for the composites from 10 to 20 min of hot pressing. As the hot-pressing time increased, the flexural properties and density increased for the kenaf fiber/soy flour composites and decreased for the other two composites with BASF Acrodur resin. BASF Acrodur resin reduced the hot-pressing time of the biocomposites. With 28 wt % BASF Acrodur resin (on the basis of 100% solid content) as a binder and with the biocomposites hot-pressed for 10 min, the swelling thickness and water absorption of the composites were reduced by 55 and 64%, and the flexural strength and modulus were improved by 72 and 188%, respectively. More simultaneous failures of the fiber and adhesive were observed at the fracture surface of the kenaf fiber/soy flour/BASF Acrodur resin composite.
机译:在这项研究中,从洋麻纤维/大豆蛋白,洋麻纤维/ DS 3530和洋麻纤维/大豆蛋白/ DS 3530制备了三种不同类型的生物复合材料。生物复合材料的傅立叶变换红外光谱表明,洋麻中存在化学反应。纤维,大豆粉和巴斯夫Acrodur树脂。热压时间对洋麻纤维/大豆粉复合材料和洋麻纤维/ BASF Acrodur树脂复合材料的弯曲性能和密度都有重要影响。但是,对于热压10到20分钟的复合材料,效果却相反。随着热压时间的增加,洋麻纤维/大豆粉复合材料的弯曲性能和密度增加,而其他两种含巴斯夫Acrodur树脂的复合材料的弯曲性能和密度降低。巴斯夫Acrodur树脂减少了生物复合材料的热压时间。以28 wt%的巴斯夫Acrodur树脂(基于100%的固体含量)为粘合剂,并对生物复合材料进行热压10分钟,复合材料的溶胀厚度和吸水率分别降低了55%和64%,弯曲强度和模量分别提高了72%和188%。在洋麻纤维/大豆粉/ BASF Acrodur树脂复合材料的断裂表面观察到更多的纤维和粘合剂同时失效。

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