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Graphene-Enriched Agglomerated Cork Material and Its Behaviour under Quasi-Static and Dynamic Loading

机译:富含石墨烯的团聚软木材料及其在准静态和动态载荷下的行为

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摘要

The use of cork for a variety of applications has been gaining significance due to environmental concerns and political agendas. Consequently, its range of applications is growing rapidly. In this work, aiming to improve its mechanical response for crashworthiness applications, cork agglomerates were enriched by small quantities of graphene oxide or graphene nanoplates in order to observe a resulting improvement of the mechanical behaviour during quasi-static and dynamic compressive loading cases. To produce homogenous cork agglomerates including graphene, the material was previously dispersed into granulated cork using stirrers to achieve a good distribution. Then, the typical procedure of compression and curing was carried out. Magnified images attest a good dispersion of graphene into the cork matrix. Mechanical testing was performed for a variety of graphene concentrations (0.1, 0.5 and 1.0 weight %), becoming clear that the beneficial effect of including graphene (either oxide or nanoplates) is related to a later densification stage while keeping the same stress plateau levels.
机译:由于对环境的关注和政治议程,软木在各种应用中的使用已变得越来越重要。因此,其应用范围正在迅速增长。在这项工作中,旨在改善其在耐撞性应用中的机械响应,软木附聚物中加入了少量的氧化石墨烯或石墨烯纳米板,以观察在准静态和动态压缩载荷情况下机械性能的改善。为了生产包括石墨烯的均质软木附聚物,预先使用搅拌器将材料分散到颗粒状软木中,以实现良好的分配。然后,进行压缩和固化的典型步骤。放大的图像证明了石墨烯在软木基质中的良好分散性。对各种石墨烯浓度(0.1、0.5和1.0重量%)进行了机械测试,这清楚地表明,包含石墨烯(氧化物或纳米板)的有益效果与随后的致密化阶段有关,同时保持相同的应力平稳水平。

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