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Effect of surface modified date palm fibre loading on mechanical, thermal properties of date palm reinforced phenolic composites

机译:表面改性枣棕榈纤维载荷对枣棕榈增强酚醛复合材料机械,热性能的影响

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摘要

In this research NaOH treated date palm fibres were used as reinforcement in phenolic based composites. The composites were prepared by hot press technique and evaluated tensile flexural, structural, thermo gravimetric dynamic mechanical properties. Overall properties of modification/treatment of fibers' surface enhanced, that have been studied as compared to untreated samples. The treated samples of 50% DPF composites showed highest Tensile properties among all composites but flexural properties declined compared to the untreated composites but this decline is very less. Fibre treatment showed declined properties of three point bending of DPF composites. Scanning Electron Microscopy studied the behavior of fibre and matrix bonding before and after treatment. Treated 50% DPF showed better fibre distribution, 60% DPF showed void content however 40%DPF showed poor fibre/matrix interfacial bonding. Thermogravimetric analysis studied the behavior of Treated DPF/Phenolic composites at high temperature, and found thermal stability enhanced because good interfacial bonding. Dynamic mechanical analysis showed that stability at stress of material with temperature and also studied the energy dissipation and internal friction. Treated 50%DPF showed better properties due to the ratio of mixing of fibre/matrix and better interfacial bonding. DPF composite have potential to use for exterior applications and false wall and roof.
机译:在本研究中,NaOH处理的枣棕榈纤维用作酚基复合材料中的增强物。通过热压技术制备复合材料,并评价拉伸弯曲,结构,热重量动态机械性能。与未经处理的样品相比,已经研究过的修饰/治疗纤维表面的整体性质。 50%DPF复合材料的处理过的样品在所有复合材料中显示出最高的拉伸性能,但与未处理的复合材料相比,弯曲性能下降,但这种下降非常少。纤维处理显示DPF复合材料的三点弯曲的衰减性。扫描电子显微镜研究了治疗前后纤维和基质粘合的行为。治疗的50%DPF显示出更好的纤维分布,60%DPF显示空隙含量,然而40%DPF显示出差异差的纤维/基质界面键合。热重分析研究了高温处理的DPF /酚醛复合材料的行为,发现热稳定性增强,因为良好的界面键合。动态力学分析表明,具有温度的材料应力的稳定性,并研究了能量耗散和内部摩擦。由于纤维/基质的混合和更好的界面键合,治疗的50%DPF显示出更好的性能。 DPF复合材料有可能用于外部应用和假墙和屋顶。

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