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Ameliorative effects of Ficus deltoidea on hormonal balance in LTZ induced PCOS rats

机译:Ficus deltoidea对LTZ诱导PCOS大鼠激素平衡的改善作用

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Various research works have recently reported that carbon nanotubes (CNTs) are being widely used as the reinforcement nanofillers in polymer nanocomposites. The outcome from the previous literature has stated that CNTs are enhancing the mechanical properties, but the effects of incorporating CNTs into hybrid composites consisting of natural fibre are not well explained. This study has explored the effects of using multiwalled carbon nanotube (MWCNT) material as a nanofiller on the tensile, flexural and low velocity impact (LVI) properties of bamboo/glass hybrid composites. Composites containing 0.5 wt.% CNTs were compared with the control hybrid composites without CNTs. LVI tests (drop weight) were performed with various energy levels ranging from 7J to 35J. The experimental results revealed an increment of 7.73% in the tensile strength of CNT filled composites compared to the control unfilled hybrid composites. However, a remarkable decrease of the flexural properties was recorded for the CNT filled composites, with these being 49.37% lower than the control. Moreover, analysis from the LVI testing showed that the incorporat ion of CNTs into hybrid composites gave a significant improvement in the impact resistance capabilities of the composites which was 9.21% higher than the control. Taken as a whole, the tensile and impact properties increased as the CNTs were integrated into the hybrid composites, but a decrement was detected in the flexural properties.
机译:最近报道了各种研究作品,即碳纳米管(CNT)被广泛用作聚合物纳米复合材料中的增强纳米填料。来自先前文献的结果表明,CNT是增强机械性能,但是将CNT掺入由天然纤维组成的杂化复合材料的效果并不良好解释。本研究探讨了在竹/玻璃混合复合材料的拉伸,弯曲和低速冲击(LVI)性质上使用多壁碳纳米管(MWCNT)材料作为纳米填充物的影响。将含有0.5重量%的复合材料与无CNT的对照混合复合材料进行比较%CNT。使用7J至35J的各种能量水平进行LVI测试(下降重量)。实验结果表明,与控制未填充的混合复合材料相比,CNT填充复合材料的拉伸强度的增量为7.73%。然而,为CNT填充的复合材料记录了弯曲性能的显着降低,这些复合材料比对照低49.37%。此外,来自LVI测试的分析表明,CNT的含入掺入杂化复合材料的离子对复合材料的抗冲击能力显着改善,其比对照高9.21%。作为一个整体,随着CNT被整合到混合复合材料中,拉伸和抗冲击性能增加,但在弯曲性能下检测到衰减。

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