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Mechanisms of interfacial bond in steel and polypropylene fiber reinforced geopolymer composites

机译:钢和聚丙烯纤维增强地质聚合物复合材料的界面结合机理

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The fiber-matrix interface properties play an important role in determining the overall mechanical performance of the fiber reinforced brittle matrix composites. This study is to evaluate the effects of wettability, chemical characterization and nanometric roughness of two different fibers, polypropylene (PPF) and micro steel fibers (MSF), superposed by shrinkage of fly ash based geopolymer binder on fiber matrix interaction and the consequent mechanical properties of the corresponding composites. The fiber incorporation in geopolymer matrix was performed by 0.5, 1, 2, 3 and 4% of the total volume of each type of fibers. The results show that MSF has strong contact with the geopolymer paste since it tends to behave as a hydrophilic material that resulted in significant improvement in energy absorption and flexural strength of the composite; while PPF led to fiber-matrix debonding due to hydrophobic characteristics of the fiber compounds by geopolymer shrinkage that weakened the mechanical performances of the composites. (C) 2015 Elsevier Ltd. All rights reserved.
机译:纤维-基质界面特性在确定纤维增强的脆性基质复合材料的整体机械性能中起着重要作用。这项研究旨在评估两种不同的纤维(聚丙烯(PPF)和微钢纤维(MSF))的可湿性,化学特性和纳米粗糙度,其与粉煤灰基聚合物的收缩对纤维基体相互作用和随之产​​生的机械性能的影响相应的复合材料。纤维掺入地质聚合物基质中的方式为每种纤维总体积的0.5%,1、2、3和4%。结果表明,MSF与地质聚合物糊料具有很强的接触性,因为它倾向于表现为亲水性材料,从而显着改善了复合材料的能量吸收和弯曲强度。而PPF则由于地质聚合物的收缩而使纤维化合物具有疏水特性,从而导致纤维基质剥离,从而削弱了复合材料的机械性能。 (C)2015 Elsevier Ltd.保留所有权利。

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