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Improving the Adhesion between Pineapple Leaf Fiber and Natural Rubber by Using Urea Formaldehyde Resin

机译:用脲醛树脂改善菠萝叶片纤维和天然橡胶之间的粘附性

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Green composites, especially those that are reinforced with natural fibers, have received a great deal of attention due to the problems of global warming and resources depletion. Pineapple leaf fiber (PALF) is an interesting choice because of its high mechanical properties and it is obtained from agricultural waste. In this work PALF was combined with natural rubber (NR) to produce green rubber composite with enhanced mechanical properties. Since the two materials are so different in their stiffness and polarity, poor interfacial adhesion and thus low stress transfer, between NR and PALF may be expected. Attempts were made to use urea formaldehyde (UF) resin to improve the adhesion between PALF and NR. PALF was coated with different amounts of UF resin in solution. The fiber was characterized with FTIR, XPS and SEM. Uniaxially aligned PALF reinforced rubber composites with a fixed amount of 10 parts per hundred of rubber (phr) PALF were prepared. The adhesion between PALF and NR was evaluated from the tensile stress-strain curve and fracture surface of the composite. It was found that UF resin had negligible effect in improving the stress transfer but rather reduced it as shown in the stress-strain curve. Thicker coating of UF resin led to lower reinforcement effect and, hence, lower modulus. Stress at break, on the other hand, increased with increasing coating thickness.
机译:由于全球变暖和资源枯竭的问题,绿色复合材料,特别是那些用天然纤维加固的那些。菠萝叶纤维(PALF)是一种有趣的选择,因为其高机械性能,它是从农业废物中获得的。在这项工作中,PALF与天然橡胶(NR)相结合,以生产具有增强的机械性能的绿色橡胶复合材料。由于两种材料在它们的刚度和极性中如此不同,因此可以预期在NR和PALF之间的界面粘连和因此低应力转移。尝试使用尿素甲醛(UF)树脂来改善PALF和NR之间的粘附性。 PALF在溶液中涂有不同量的UF树脂。纤维具有FTIR,XPS和SEM的特征。制备单轴对齐的PALF增强橡胶复合材料,其固定量为每百份橡胶(PHR)pALF。从复合应力 - 应变曲线和复合材料的断裂表面评价pALF和NR之间的粘附性。发现UF树脂在改善应力转移方面具有可忽略不计的影响,而是如应力 - 应变曲线所示的效果。 UF树脂厚的涂层导致较低的增强效果,因此,低模量。另一方面,断裂应力随着涂层厚度的增加而增加。

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