首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering >Efficient prediction of damage resistance and tolerance of composite aerospace structures
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Efficient prediction of damage resistance and tolerance of composite aerospace structures

机译:复合材料航空结构抗损伤性和耐受性的有效预测

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摘要

The present work introduces efficient methodologies based on the finite-element method for a quick evaluation of damage resistance and damage tolerance of composite aerospace structures. Monolithic, stringer-stiffened structures, and sandwich structures are considered. The presented methodologies cover the simulation of the dynamic response of a structure during a low velocity impact event including the prediction of the internal non-visible or barely visible damage that develops during the impact. Additionally, methods for the prediction of the compression-after-impact strength are presented. In order to permit an accurate and efficient calculation of deformations and stresses in sandwich structures, special finite-element formulations have been developed. A comparison of simulation results with experimental data is presented for a two-stringer monolithic panel and for a honeycomb sandwich plate. The examples demonstrate that the presented methodologies can be used to quickly assess the damage tolerance of composite structures.
机译:本工作介绍了一种基于有限元方法的有效方法,用于快速评估复合航空结构的抗损伤性和抗损伤性。考虑了整体式,纵梁加劲结构和夹心结构。所提出的方法论涵盖了低速撞击事件期间结构动力响应的仿真,包括对撞击过程中内部不可见或几乎不可见的损伤的预测。此外,介绍了预测撞击后压缩强度的方法。为了允许精确有效地计算夹层结构中的变形和应力,已经开发了特殊的有限元公式。给出了两纵梁整体板和蜂窝夹心板的仿真结果与实验数据的比较。实例表明,所提出的方法可用于快速评估复合结构的损伤容限。

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