首页> 外文会议>International RILEM symposium on adhesion between polymers and concrete >EFFECTS OF THE INCREASED FIBRE SURFACE WETTABILITY ON THE POLYPROPYLENE FIBRE CONCRETE INTERFACIAL BONDING AND THE PROPERTIES OF THE POLYPROPYLENE FIBRE REINFORCED CONCRETE
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EFFECTS OF THE INCREASED FIBRE SURFACE WETTABILITY ON THE POLYPROPYLENE FIBRE CONCRETE INTERFACIAL BONDING AND THE PROPERTIES OF THE POLYPROPYLENE FIBRE REINFORCED CONCRETE

机译:纤维表面润湿性增加对聚丙烯纤维混凝土界面粘合的影响及聚丙烯纤维钢筋混凝土的性能

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In this investigation, both the fluorination and the oxyfluorination process were used to treat the surface of PP fibres. It was found that the Lewis acid, base components γ~?, γ~-) of the surface free energies are increased by fluorination and oxyfluorination, with the increment of γ~? ranging from 6 to 20 times. The interfacial bond strength can be increased by maximum of 2.5 times after the PP fibres were fluorinated or oxyfluorinated. The mechanism of the increment in interfacial bonding was proposed using the Lewis acid-base interfacial interaction concept. The effect of the increased PP fibre surface wettability, as well as the enhanced interfacial bonding, on the properties of PP fibre reinforced concrete was examined by comparing the physical and mechanical properties of the oxyfluorinated PP fibre reinforced concrete to the concrete reinforced by unmodified PP fibre. It was found that the oxyfluorinated PP fibres in concrete could more effectively reduce the concrete bleeding, reduce the water absorption and apparent porosity, reduce the setting time of concrete and increase the plastic and drying shrinkage cracking control capability. The impact resistance and the toughness of the PP fibre reinforced concrete subjected to flexural loading are also increased.
机译:在该研究中,既进行氟化和oxyfluorination过程被用来治疗PP纤维的表面。据发现,路易斯酸,碱成分γ〜?,γ〜 - 表面自由能增加氟化和oxyfluorination,用γ〜的增量的)?从6至20倍。的界面粘结强度可提高最大的2.5倍PP纤维氟化或oxyfluorinated之后。使用路易斯酸 - 碱界面相互作用概念被提出在界面结合的增量的机制。钢筋通过比较oxyfluorinated PP纤维的物理机械性能检查的增加PP纤维的表面润湿性的对PP纤维的性质的影响,以及增强的界面结合,混凝土的钢筋混凝土的混凝土增强用未改性的PP纤维。据发现,所述oxyfluorinated PP纤维在混凝土能更有效地降低混凝土出血,减少水吸收和表观孔隙度,降低混凝土的凝固时间和提高塑料和干燥收缩裂缝控制能力。耐冲击性和经受弯曲应力的PP纤维混凝土的韧性也增加。

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