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Single fibre model composite: Interfacial shear strength measurements between reactive polyamide-6 and cellulosic or glass fibres by microdroplet pullout test

机译:单纤维模型复合材料:通过微滴拉力试验测量反应性聚酰胺6与纤维素或玻璃纤维之间的界面剪切强度

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This work aims to study the effect of reactive molding on polyamide-6 (PA6) based micro composites with either glass or high tenacity viscose as fibre reinforcements. For this purpose, microdroplet pullout test was found to be well suited to determine the interfacial shear strength. For pull-out testing, samples are prepared with a common method implying melting polyamide-6 and an innovative method which allows the microdroplets formation by direct wetting in the reactive mixture. Conditions to obtain microdroplet in this new method are close to those of real size composite molding. First, this work focus on the verification of the new sample preparation method using H-1 and C-13 NMR to determine conversion rate and verify the presence of polyamide-6 on wetted fibres bundles. Contact angle are calculated to confirm the NMR analysis conclusions. Both of these analyses confirm that PA6 is effectively formed on fibres when wetting with the reactive mixture. Finally, interfacial shear strength is compared for both glass and high tenacity viscose with these two types of preparation procedures. Obtained values for glass fibres are tau = 25 +/- 6 MPa with PA6-melting and tau = 20 +/- 3 MPa with reactive mixture wetting. Reactive mixture wetting also allows to avoid high tenacity viscose degradation during PA6 formation, leading to the determination of the interfacial shear strength tau = 12 +/- 3 MPa. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作旨在研究反应性模塑对以玻璃纤维或高强度粘胶为纤维增强材料的聚酰胺6(PA6)基微复合材料的影响。为此,发现微滴拉出试验非常适合确定界面剪切强度。对于拉出测试,采用暗示熔化聚酰胺6的通用方法和创新方法(通过直接润湿反应性混合物来形成微滴)来制备样品。用这种新方法获得微滴的条件接近于实际尺寸的复合成型条件。首先,这项工作侧重于验证使用H-1和C-13 NMR确定转化率并验证湿纤维束上是否存在聚酰胺6的新样品制备方法。计算接触角以证实NMR分析结论。这些分析均证实当用反应性混合物润湿时,PA6有效地形成在纤维上。最后,用这两种类型的制备方法比较了玻璃和高强度粘胶的界面剪切强度。对于玻璃纤维,在PA6熔融下获得的tau = 25 +/- 6 MPa,在反应性混合物润湿下获得的tau = 20 +/- 3 MPa。反应混合物的润湿还可以避免在PA6形成过程中高强度粘胶降解,从而确定界面剪切强度tau = 12 +/- 3 MPa。 (C)2017 Elsevier Ltd.保留所有权利。

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