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Surface Modification of Bagasse Fibers by Silane Coupling Agents Through Microwave Oven and Its Effects on Physical,Mechanical,and Rheological Properties of PP Bagasse Fiber Composite

机译:硅烷偶联剂通过微波炉对蔗渣纤维的表面改性及其对PP蔗渣纤维复合材料物理,机械和流变性能的影响

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Polypropylene/bagasse fiber composites were prepared by compounding polypropylene (PP) with bagasse fibers as reinforcing filler.Surfaces of fibers were modified through the use of silane coupling agents (Vinyltrimethoxysilane and y-Glycidoxypropyltri-methoxysilane).The fiber coating was performed by mixing of silane with fibers and cured through microwave oven in presence of catalyst.It was found that modification of surface fiber will change the physical,mechanical,morphological,and rheological properties of composite.It was observed from scanning electron microscopy that fiber adhesion to matrix has been improved and so as dispersion.Addition of fibers increases the melt viscosity in unmodified fibers but reduced the melt viscosity for modified fibers and even the viscosity is lower at higher loading compared with unmodified fibers.The tensile strength and tensile modulus increased in modified fibers compared with the unmodified on the same loading,but elongation at break decreased.The effect of coupling agent on properties of filled PP depend on the content of coupling agents and optimum amount was achieve through measurement of water absorption.Two types of coupling agents were used,one as A-171 [CH2=CHSi (OCH3)3] and second one as A-187 [CH2OCHCH20 (CH)3Si(OCH3)],the first one shows better adhesion to the fibers and improvements in mechanical properties are much better compared with the second one.
机译:聚丙烯/甘蔗渣纤维复合材料是通过将聚丙烯(PP)与甘蔗渣纤维作为增强填料混合而制得的,纤维表面通过使用硅烷偶联剂(乙烯基三甲氧基硅烷和γ-乙二氧基丙基三甲氧基硅烷)进行改性,纤维涂层通过混合硅烷与纤维并在催化剂存在下通过微波炉固化。发现表面纤维的改性会改变复合材料的物理,机械,形态和流变性能。从扫描电子显微镜观察到,纤维对基质的附着力得到了改善。纤维的添加增加了未改性纤维的熔体粘度,但降低了改性纤维的熔体粘度,甚至在较高负荷下的粘度也比未改性纤维低。改性纤维的拉伸强度和拉伸模量与在相同载荷下未改性,但断裂伸长率降低。偶联剂对填充PP性能的影响取决于偶联剂的含量,通过测量吸水率可以达到最佳用量。使用了两种偶联剂,一种为A-171 [CH2 = CHSi(OCH3)3]第二种是A-187 [CH2OCHCH20(CH)3Si(OCH3)],与第二种相比,第一种显示出对纤维的更好粘附性,机械性能的改善也更好。

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