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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Improvement of Mechanical Properties of Injection-Molded Polylactic Acid-Kenaf Fiber Biocomposite
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Improvement of Mechanical Properties of Injection-Molded Polylactic Acid-Kenaf Fiber Biocomposite

机译:注射成型聚乳酸肯纳夫纤维生物复合材料力学性能的改善

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The motive of this study is to lessen the dependence on non-degradable plastic packaging by developing alternative material; reinforced poly(lactie acid) (PLA) with kenaf fiber (KF) biocomposite using available plastic processing machineries. For that reason, this study focuses on fabrication of PLA-KF biocomposite using intermeshing co-rotating twin-screw extruder and then injection molded for mechanical characterization. The effect of KF loading from 0 to 20 wt% was studied. No coupling agent was added due to high affinity of PLA and KF and both components are hydrophilic in nature. The average of KF aspect ratio is 30. Tensile properties and flexural properties show similar trend where significant improvement was attained at 20 wt% KF content. Scanning electron micrograph of tensile fracture specimen has revealed the hypothesis of interaction between fiber and matrix which subsequently amplified the tensile properties. It is an interesting finding where the experimental value of tensile modulus was 15% higher than theoretical tensile modulus at 20 wt% KF. Additionally, PLA-KF bicomposite produced, has high specific strength and specific modulus. This could suggest that KF may be incorporated into PLA to reduce mass of the end product and substantially reduce the cost of raw materials. As expected, impact strength however decreases with KF content.
机译:这项研究的目的是通过开发替代材料来减少对不可降解塑料包装的依赖。使用现有的塑料加工机械,用洋麻纤维(KF)生物复合材料增强聚乳酸(PLA)。因此,本研究着重于使用相互啮合的同向旋转双螺杆挤出机制造PLA-KF生物复合材料,然后对其进行注塑成型以进行机械表征。研究了KF负载量为0至20wt%的影响。由于PLA和KF的高亲和力,因此未添加偶联剂,并且两种组分本质上都是亲水性的。 KF长径比的平均值为30。拉伸性能和挠曲性能显示出相似的趋势,其中KF含量为20 wt%时可获得显着改善。拉伸断裂试样的扫描电子显微照片揭示了纤维与基体之间相互作用的假说,该假说随后放大了拉伸性能。这是一个有趣的发现,其中在20 wt%KF时,拉伸模量的实验值比理论拉伸模量高15%。另外,生产的PLA-KF双复合材料具有高的比强度和比模量。这可能表明可以将KF掺入PLA中以减少最终产品的质量并显着降低原材料成本。正如预期的那样,冲击强度随KF含量的降低而降低。

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