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Design and numerical modeling of a pressurized airframe bulkhead joint

机译:加压机体舱壁接头的设计与数值模拟

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摘要

The structural loading on a conceptual lap joint in the empennage of a civil aircraft has been investigated. The lap joint interfaces the end-pressure part-hemispherical bulkhead to the cylindrical fuselage. The pressure bulkhead is made of carbon fiber reinforced plastic materials. The aim of the study is to present numerical results of the induced structural loading from the fuselage positive internal pressure differential and the localized high stress intensity field at the lap joint location. A methodology for the appropriate numerical approach to analyze the domed pressure bulkhead is presented. The results of the numerical investigation showed that the laminate loading levels calculated by the use of either initial sizing analytical formulas for pressurized domes or by the use of equilibrium nodal loading from finite element models of low fidelity compared to refined finite element analysis can be significantly underestimated. Some of the implications on carbon fiber reinforced plastic structural sizing at the specified location are developed.
机译:研究了民用飞机尾翼上概念性搭接处的结构载荷。搭接接头将端压半球形隔板连接到圆柱形机身。压力隔板由碳纤维增强塑料材料制成。研究的目的是提供来自机身正内压差和搭接位置处局部高应力强度场引起的结构载荷的数值结果。提出了一种适当的数值方法来分析圆顶压力舱壁的方法。数值研究的结果表明,相比于改进的有限元分析,通过使用初始圆顶尺寸的解析公式或者通过采用低保真度有限元模型的平衡节点荷载来计算层压板的荷载水平可能会被低估。 。在指定位置上对碳纤维增强塑料结构尺寸的一些影响已得到开发。

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