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首页> 外文期刊>Acta Materialia >THERMAL TRANSPORT AND FIRE RETARDANCE PROPERTIES OF CELLULAR ALUMINIUM ALLOYS
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THERMAL TRANSPORT AND FIRE RETARDANCE PROPERTIES OF CELLULAR ALUMINIUM ALLOYS

机译:蜂窝状铝合金的热传输和阻燃性能

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Closed-cell aluminium alloy foams exhibit exceptional resistance to fire. It is unclear why this happens, although the protection imparted by oxide Al_2O_3 layers has been suggested. This work attempts to uncover the thermal transport processes in metallic foams. The apparent thermal conductivities of two- dimensional foams having a variety of cellular microstructures are first calculated. These include regular honeycombs, Voronoi structures and Johnson-Mehl models. The effects of several types of geometric imperfection-Plateau borders, cell-edge misalignments, fractured cell edges, missing cells, inclusions and cell size variations-are studied by using analytical as well as finite element methods. The focus is on met- allic foams where the transport of heat is dominated by solid conduction and thermal radiation; contri- butions from gaseous conduction and convection are neglected. The coupling of solid conduction with thermal radiation is dealt with by using the method of finite elements. These results are then applied to solve the transient temperature field of a cellular metal plate subjected to a sudden introduction of a high- temperature source of heat such as fire. The factors which dictate the thermal and structural fire retardance of cellular metallic foams are identified.
机译:闭孔铝合金泡沫具有出色的耐火性。尽管已经提出了由氧化物Al_2O_3层赋予的保护作用,但不清楚为什么会发生这种情况。这项工作试图揭示金属泡沫中的热传输过程。首先计算具有多种孔微结构的二维泡沫的表观热导率。这些包括常规蜂窝,Voronoi结构和Johnson-Mehl模型。通过分析和有限元方法研究了几种类型的几何缺陷的影响:高原边界,单元边缘未对准,单元边缘断裂,单元缺失,内含物和单元尺寸变化。重点放在金属泡沫上,其中热量的传导主要由固体传导和热辐射引起。忽略了由气体传导和对流引起的影响。固体传导与热辐射的耦合通过有限元方法来解决。然后将这些结果应用于解决蜂窝金属板的瞬态温度场,该金属板承受突然引入的高温热源(例如火)。确定了决定泡沫金属泡沫的耐热和结构阻燃性的因素。

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