首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Rheological behavior of composites made from linear medium-density polyethylene and hemp fibers treated by surface-initiated catalytic polymerization
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Rheological behavior of composites made from linear medium-density polyethylene and hemp fibers treated by surface-initiated catalytic polymerization

机译:通过表面引发的催化聚合处理的基层介质密度聚乙烯和大麻纤维制成的复合材料的流变行为

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摘要

This work presents different rheological methods to determine the effect of fiber surface treatment on their interaction with a polymer matrix. In particular, surface-initiated catalytic polymerization was investigated on hemp fibers to improve their adhesion with linear medium-density polyethylene (LMDPE). The selected rheological tests (creep-recovery (solid state), small and large amplitude oscillation shear, and transient rheology (melt state)) were used to compare the treated and untreated fiber composites with the neat matrix. The results showed a significant improvement of the treated hemp composite (LPHC) creep modulus with respect to its untreated counterpart (LNHC) leading to a reduction of the creep strain, especially as temperature increases. The transient viscosity was modeled using a modified Kohlrausch-Williams-Watt (KWW) equation showing an increase in the transient viscosity () and relaxation time (tau) with fiber addition and surface treatment. These results were confirmed by large amplitude oscillatory shear (LAOS) through the reduction of the relative third harmonic (I (3/1)), intrinsic nonlinearity parameter (Q (0)), and nonlinear viscoelastic ratio (NRL). The results clearly show that catalytic polymerization is a good surface modification technique to increase the compatibility between natural fibers and polymer matrices as to improve all their final properties.
机译:该工作提出了不同的流变方法,以确定纤维表面处理对其与聚合物基质相互作用的影响。特别地,研究了表面引发的催化聚合,对大麻纤维进行了用线性介质密度聚乙烯(LMDPE)改善它们的粘附性。使用所选择的流变测试(蠕变恢复(固态),小而大的振幅振荡剪切,以及瞬态流变学(熔体状态),用于将处理和未处理的纤维复合材料与整齐基质进行比较。结果表明,处理过的半斑复合(LPHC)蠕变模量相对于其未处理的对应物(LNHC)的显着改善,导致蠕变菌株的减少,特别是随着温度的增加。使用改性的Kohlrausch-Williams-Watt(KWW)方程进行模拟瞬时粘度,显示出瞬态粘度()和弛豫时间(TAU)的增加,具有纤维添加和表面处理。通过减少相对三次谐波(I(3/1)),内在非线性参数(Q(0))和非线性粘弹性比(NRL),通过减小这些结果来证实这些结果。结果清楚地表明,催化聚合是一种良好的表面改性技术,用于增加天然纤维和聚合物基质之间的相容性,以改善其所有最终性质。

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