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Study on surface modification of basalt fiber and properties of BF/EP-PU composites

机译:玄武岩纤维的表面改性及BF / EP-PU复合材料的性能研究

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In this paper, basalt fiber (BF) was modified by two kinds of method, one of method was corroded by concentrated nitric acid, the other was superficial modified by silane coupling agent KH560, and then the surface of basalt fiber was observed by SEM. The results indicated that roughness of modified BF increased, this will help to improve mechanical properties and bonding properties of composites. And BF/EP-PU composite was prepared. Thermodynamic properties and dielectric properties of composite materials were measured and analyzed. The result was suggested that the surface of basalt fiber became rough after modified by both nitric acid and KH560. Mechanical property of composites was improved with the doping of basalt fiber, shear strength of 2wt% BF composite was maximum. Thermal decomposition temperature (Td) was increased, and basalt fiber/epoxy resin modified by nitric acid had higher heat resistant than that of composites modified by KH560. Both dielectric constant and dielectric loss increased with the increasing of the ding content of BF.
机译:本文采用两种方法对玄武岩纤维(BF)进行改性,一种方法是用浓硝酸腐蚀,另一种是用硅烷偶联剂KH560进行表面改性,然后用SEM观察玄武岩纤维的表面。结果表明,改性高炉的粗糙度增加,这将有助于改善复合材料的机械性能和粘结性能。制备了BF / EP-PU复合材料。测量并分析了复合材料的热力学性质和介电性质。结果表明,玄武岩纤维表面经硝酸和KH560改性后均变粗糙。玄武岩纤维的掺混提高了复合材料的力学性能,2wt%高炉复合材料的剪切强度最大。提高了热分解温度(Td),硝酸改性的玄武岩纤维/环氧树脂的耐热性高于KH560改性的复合材料。随着BF含量的增加,介电常数和介电损耗均增加。

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