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Chemical modification of starch with epoxy resin to enhance the interfacial adhesion of epoxy-based glass fiber composites

机译:用环氧树脂对淀粉进行化学改性,以增强环氧树脂基玻璃纤维复合材料的界面粘合力

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In order to fabricate epoxy-based glass fiber composites with superior mechanical and thermal properties, starch was chemically modified by E-51 epoxy resin, as a sizing for glass fibers. The hydrophilicity of starch was enhanced after modification as the surface tension decreased from 64.98 to 47.99 mN m(-1), and the contact angle between the starch suspension and slide glass decreased from 50.26 degrees to 33.53 degrees. Besides, the interfacial adhesion between glass fiber and epoxy resin was obviously improved with the help of the modified starch, which can be clearly observed from SEM images. Consequently, significant increases of tensile strength from about 35 MPa to over 57 MPa, bending strength from about 65 MPa to over 87 MPa, and impact strength from about 8 KJ m(-2) to over 14 KJ m(-2) were obtained. Moreover, with the improvement of interfacial adhesion between the modified-starch sized glass fiber and epoxy resin, the thermo-stability of the composite was also improved as demonstrated by DSC. This study suggested a simple but effective chemical modification technique using a modifier to enhance interfacial adhesion in fabricating epoxy-based glass fiber composites with superior properties.
机译:为了制造具有优异机械和热性能的环氧基玻璃纤维复合材料,淀粉通过E-51环氧树脂进行化学改性,作为玻璃纤维的上浆剂。改性后,淀粉的亲水性增强,表面张力从64.98降至47.99 mN m(-1),淀粉悬浮液与载玻片之间的接触角从50.26度降低至33.53度。此外,在改性淀粉的帮助下,玻璃纤维与环氧树脂之间的界面粘合性得到了明显改善,这可以从SEM图像中清楚地观察到。结果,抗拉强度从约35 MPa增加到超过57 MPa,弯曲强度从约65 MPa超过超过87 MPa,冲击强度从约8 KJ m(-2)到超过14 KJ m(-2)显着增加。 。此外,随着改性淀粉尺寸的玻璃纤维与环氧树脂之间的界面粘合性的改善,复合材料的热稳定性也得到了改善,如DSC所示。这项研究提出了一种简单而有效的化学改性技术,即使用改性剂来增强具有优良性能的环氧基玻璃纤维复合材料的界面粘合力。

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