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Influence of Nanoclay on the Adhesive and Physico-Mechanical Properties of Liquid Polysulfide Elastomer

机译:纳米粘土对液态多硫化物弹性体的黏着力和物理机械性能的影响

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摘要

Addition of Cloisite 30B nanoclay particles to a typical ammonium dichromate cured liquid polysulfide elastomeric adhesive leads to very dramatic increase in the aluminum-aluminum joint strength measured by 180° peel test. The increase in adhesive strength could be explained in terms of higher cohesive strength of the nanocomposite adhesives, which has been derived from good interaction between the nanoclay and the polysulfide elastomer. The addition of nanoclay also facilitates the adhesive to dissipate greater amount of energy (by fibrils formation) during the debonding process of the peel test. In addition, the nanoclay aids the low polarity polysulfide elastomer to achieve better molecular contact with the aluminum substrate. The nanoclay particles are very well dispersed (mostly exfoliated) in the polymer matrix even at 8 wt% of nanoclay concentration. X-ray diffraction (XRD) and transmission electron microscopy (TEM) studies provide evidences for the excellent dispersion of the nanoclay platelets in the polymer matrix. The results of the mechanical and dynamic mechanical studies confirm the excellent interaction between the nanoclay and the polysulfide elastomer.
机译:将Cloisite 30B纳米粘土颗粒添加到典型的重铬酸铵固化的液态多硫化物弹性体粘合剂中会导致通过180°剥离测试测得的铝-铝结合强度显着提高。可以用纳米复合粘合剂的更高的内聚强度来解释粘合强度的增加,这是由于纳米粘土与聚硫化物弹性体之间的良好相互作用而产生的。纳米粘土的添加还促进粘合剂在剥离测试的脱粘过程中耗散大量能量(通过原纤维形成)。另外,纳米粘土帮助低极性聚硫化物弹性体实现与铝基材更好的分子接触。纳米粘土颗粒即使在纳米粘土浓度为8 wt%的情况下也能很好地分散(大部分脱落)在聚合物基质中。 X射线衍射(XRD)和透射电子显微镜(TEM)研究为纳米粘土血小板在聚合物基质中的出色分散提供了证据。力学和动态力学研究的结果证实了纳米粘土与聚硫化物弹性体之间的出色相互作用。

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