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首页> 外文期刊>Composite interfaces >Interfacial effects in short sisal fiber/maleated castor oil foam composites
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Interfacial effects in short sisal fiber/maleated castor oil foam composites

机译:短剑麻纤维/马来酸蓖麻油泡沫复合材料的界面效应

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摘要

In this study, bio-foam composites are produced using short sisal fiber as the reinforcement and modified castor oil as the matrix, respectively. The foam composites with an average cell size of 200 pm possess properties similar to those of commercial polyurethane foams. The effects of fiber loading, fiber length and foam density on the compressive properties of the foam composites are reported in relation to the interfacial interaction. It is found that the addition of chopped sisal alters cell structure of the foam. Surface pre-treatment of sisal by alkali or silane coupling agent helps to improve the mechanical properties and interfacial adhesion. The exposure of the fibers to the gas cells of the foam reduces the effectiveness of interfacial effect, which is different from the case of conventional bulk composites. As a result, the reinforcing ability of sisal fibers becomes a function of fiber length and so on.
机译:在这项研究中,分别使用短剑麻纤维作为增强材料和改性蓖麻油作为基质来生产生物泡沫复合材料。平均泡孔尺寸为200 pm的泡沫复合材料具有与商用聚氨酯泡沫相似的性能。报告了纤维负载,纤维长度和泡沫密度对泡沫复合材料压缩性能与界面相互作用的影响。发现切碎的剑麻的添加改变了泡沫的孔结构。用碱或硅烷偶联剂对剑麻进行表面预处理有助于改善机械性能和界面粘合力。纤维暴露于泡沫的气孔降低了界面效应的有效性,这与常规的本体复合材料的情况不同。结果,剑麻纤维的增强能力成为纤维长度等的函数。

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