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Preparation and Dimensional Stability of Organo-Montmorillonite (O- MMT) Treated Unsaturated Polyester Hybrid Composites Filled with Keratin Fiber

机译:有机锰矿(O-MMT)处理的不饱和聚酯杂化复合材料的制备和尺寸稳定性填充具有角蛋白纤维的

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O-MMT treated unsaturated polyester based hybrid composites were prepared using keratin fiber obtained from chicken feathers. Fibers of similar dimension were selected to fabricate composites through hand lay-up method. The preparation and dimensional stability properties of keratin fiber as reinforcements in composites is outlined in this paper. Varying O-MMT contents in nancomposites is performed to investigate the effects on the dimensional stability (water absorption and thickness swelling) of the composites. Results indicated that increasing fiber content deteriorates dimensional stability of the composites and composites. However, improvements in dimensional stability of the keratin fibercomposites were observed with O-MMT. O-MMT treatment reduces the water absorption and thickness swelling, especially at 5wt% of O-MMT concentrationat all range of fiber content. At 5wt% concentration of O-MMt, 10wt% keratin fiber content marks the lowest water absorption and thickness swelling with rate of 0.65% and 1.93%, respectively. Adopting 10wt% of keratin fiber at 5wt% of O-MMT can be utilized for application requiring high dimensional stability.?
机译:使用从鸡羽从鸡羽纤维获得的角蛋白纤维制备o-MMT处理的不饱和聚酯的混合复合材料。选择类似尺寸的纤维以通过手动叠层方法制造复合材料。本文概述了角蛋白纤维作为复合材料中增强物的制备和尺寸稳定性特性。进行非复合材料中的改变O-MMT含量以研究复合材料的尺寸稳定性(吸水和厚度膨胀)的影响。结果表明,纤维内容的增加降低了复合材料和复合材料的尺寸稳定性。然而,用O-MMT观察到角蛋白纤维孔料的尺寸稳定性的改进。 O-MMT处理可降低吸水和厚度溶胀,特别是在5wt%的O-MMT浓度浓度的纤维含量范围。在5wt%的O-MMT浓度下,10wt%角蛋白纤维含量标志着速率分别为0.65%和1.93%的最低吸水和厚度溶胀。采用5wt%O-MMT的蛋白纤维的10wt%可用于需要高尺寸稳定性的应用。?

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