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Designing Sandwich Polymer Matrix Composite Panels For Structural Integrity In Fire

机译:设计用于火灾中结构完整性的三明治式聚合物基复合板

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This is the continuation of our published paper [Gu P, Asaro R]. Designing polymer matrix composite panels for structural integrity in fire. Compos Struct 2008;84:300-9]. This paper addresses the compressive mechanical load bearing capacity of sandwich polymer matrix composite panels under transverse thermal gradients caused by fire. An example of such combined loading condition is that of panels in ship and vessel structures under transverse thermal gradients caused by fire. Specifically, we discuss the mechanical design considerations, failure modes that lead the panels to fail in the combined thermal-mechanical condition. An approach to assess critical load among the failure modes is discussed for design purpose. A computer program is developed based on the approach to evaluate sandwich panel's load bearing capacity in fire. Examples are presented to design the panel for given thermal and mechanical requirements. Due to the core's low bending stiffness, there is a large decrease of the panel's load bearing capacity when the fire-exposed skin is degradated.
机译:这是我们已发表论文的延续[Gu P,Asaro R]。设计聚合物基复合材料板以确保火灾中的结构完整性。 Compos Struct 2008; 84:300-9]。本文研究了夹层聚合物基复合材料面板在火灾引起的横向热梯度下的压缩机械承载能力。这样的组合载荷条件的一个例子是船和船只结构中的面板在着火引起的横向热梯度下。具体而言,我们讨论了机械设计方面的考虑因素以及导致面板在热机械组合条件下失效的失效模式。出于设计目的,讨论了一种评估故障模式中的临界载荷的方法。基于该方法,开发了计算机程序来评估夹芯板在火灾中的承载能力。提供了一些实例,以根据给定的热和机械要求设计面板。由于铁芯的低弯曲刚度,当着火的蒙皮退化时,面板的承载能力大大降低。

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