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首页> 外文期刊>Materials >Topography of the Interfacial Shear Strength and the Mean Intrinsic Tensile Strength of Hemp Fibers as a Reinforcement of Polypropylene
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Topography of the Interfacial Shear Strength and the Mean Intrinsic Tensile Strength of Hemp Fibers as a Reinforcement of Polypropylene

机译:界面剪切强度和大麻纤维的平均固有拉伸强度作为聚丙烯的增强

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The strength of the interphase between the reinforcements and the matrix has a major role in the mechanical properties of natural fiber reinforced polyolefin composites. The creation of strong interphases is hindered by the hydrophobic and hydrophilic natures of the matrix and the reinforcements, respectively. Adding coupling agents has been a common strategy to solve this problem. Nonetheless, a correct dosage of such coupling agents is important to, on the one hand guarantee strong interphases and high tensile strengths, and on the other hand ensure a full exploitation of the strengthening capabilities of the reinforcements. The paper proposes using topographic profile techniques to represent the effect of reinforcement and coupling agent contents of the strength of the interphase and the exploitation of the reinforcements. This representation allowed identifying the areas that are more or less sensitive to coupling agent content. The research also helped by finding that an excess of coupling agent had less impact than a lack of this component.
机译:增强物与基质之间的相互作用的强度在天然纤维增强聚烯烃复合材料的机械性能方面具有重要作用。基质和增强剂的疏水性和亲水性质的疏水和亲水性质分别妨碍了强的间差异。添加耦合代理是解决这个问题的常见策略。尽管如此,这种偶联剂的正确剂量是重要的,一方面是保证强的互连和高抗拉强度,另一方面,确保充分利用增强能力的增强能力。本文提出了使用地形型材技术来代表增强和偶联剂含量的效果和增强剂的利用。此表示允许识别对偶联剂内容或多或少敏感的区域。该研究还通过发现过量的偶联剂产生的影响而不是缺乏该组分。

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