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Assessing the structural integrity of carbon-fibre sandwich panels in fire: Bench-scale approach

机译:评估火灾中碳纤维夹芯板的结构完整性:台式方法

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The fire resistance of lightweight sandwich panels (SW) with carbon fibre/epoxy skins and a poly(methacryl imide) (PMI) foam core is investigated in compression under direct application of a severe flame (heat flux = 200 kW m(-2)). A bench-scale test procedure was used, with the sample held vertically. The epoxy decomposition temperature was quickly exceeded, with rapid flash-over and progressive core softening and decomposition. There is a change in failure mode depending on whether the load is greater or less than 50% of the unexposed failure load, or in other words if one or two skins carry the load. At high loads, failure involved both skins with a single clear linear separation across each face. There is an inflection in the failure time relationship in the similar to 50% load region, corresponding to the time taken for heat to be transmitted to the rear face, along with a change in the rear skin failure mode from separation to the formation of a plastic hinge. The integrity of the carbon front face, even with the resin burnt out, and the low thermal diffusivity of the core, both play key roles in prolonging rear face integrity, something to be borne in mind for future panel design. Intumescent coatings prolong the period before failure occurs. The ratio of times to failure with and without protection is proposed as a measure of their effectiveness. Apart from insulation properties, their adhesion and stability under severe fire impact play a key role.
机译:在直接施加强烈火焰(热通量= 200 kW m(-2))的压缩情况下,研究了具有碳纤维/环氧表皮和聚甲基丙烯酸亚胺(PMI)泡沫芯的轻质夹芯板(SW)的耐火性)。使用台式规模的测试程序,样品垂直放置。迅速超过了环氧分解温度,迅速闪蒸,并逐渐使铁芯软化和分解。取决于负载是大于还是小于未暴露的故障负载的50%,换句话说,故障模式会发生变化,换句话说,是由一个或两个蒙皮承载负载。在高负载下,故障涉及到两个蒙皮,且每个蒙皮在每个面上都有一个清晰的线性间隔。在类似于50%负载区域的失效时间关系出现了拐点,这对应于热量传递到背面所花费的时间,以及后皮肤失效模式从分离到形成皮肤的变化。塑料铰链。碳前表面的完整性,即使树脂被烧毁,以及纤芯的低热扩散率,在延长后表面完整性方面都起着关键作用,这在将来的面板设计中应牢记。膨胀型涂料延长了失效发生前的时间。提出了有或没有保护的情况下失败与失败的比率,以衡量其有效性。除了绝缘性能外,它们在强火下的附着力和稳定性也起着关键作用。

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