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Effect of natural fiber surface treatments on the interfacial and mechanical properties of henequen/polypropylene biocomposites

机译:天然纤维表面处理对henequen /聚丙烯生物复合材料的界面和机械性能的影响

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摘要

The surfaces of henequen fibers, which can be obtained from the leaves of agave plants, were treated with two different media, tap water and sodium hydroxide, that underwent both soaking and ultrasonic methods for the fiber surface treatment. Various biocomposites were fabricated with untreated and treated, chopped henequen fibers and polypropylene using a compression molding method. The result is discussed in terms of interfacial shear strength, flexural properties, dynamic mechanical properties, and fracture surface observations of the biocomposites. The soaking (static method) and ultrasonic (dynamic method) treatments with tap water and sodium hydroxide at different concentrations and treatment times significantly influenced the interfacial, flexural and dynamic mechanical properties of henequen/polypropylene biocomposites. The alkali treatment was more effective than the water treatment in improving the interfacial and mechanical properties of randomly oriented, chopped henequen/PP biocomposites. In addition, the application of the ultrasonic method to each treatment was relatively more effective in increasing the properties than the soaking method, depending on the treatment medium and condition. The greatest improvement in the properties studied was achieved by ultrasonic alkalization of natural fibers, which was in agreement with the other results of interfacial shear strength, flexural strength and modulus, storage modulus, and fracture surfaces.
机译:可以从龙舌兰植物的叶子中获得的henequen纤维的表面用两种不同的介质(自来水和氢氧化钠)进行了处理,这些介质都经过了浸泡和超声方法进行了纤维表面处理。使用压缩成型方法,用未经处理和经处理的切碎的henequen纤维和聚丙烯制造各种生物复合材料。根据界面剪切强度,挠曲性能,动态力学性能以及生物复合材料的断裂表面观察结果对结果进行了讨论。用不同浓度和处理时间的自来水和氢氧化钠进行的浸泡(静态方法)和超声(动态方法)处理显着影响了Henequen /聚丙烯生物复合材料的界面,弯曲和动态力学性能。碱处理比水处理在改善随机取向的切碎的henequen / PP生物复合材料的界面和机械性能方面更有效。另外,取决于处理介质和条件,将超声波方法应用于每种处理在增加特性方面比浸泡方法相对更有效。通过对天然纤维进行超声碱化,可以最大程度地改善所研究的性能,这与界面剪切强度,弯曲强度和模量,储能模量和断裂表面的其他结果一致。

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