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Quantifying the Influence of Lightning Strike Pressure Loading on Composite Specimen Damage

机译:量化雷击压力负荷对复合标本损伤的影响

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Experimental work has shown that a component of lightning strike damage is caused by a mechanical loading. As the profile of the pressure loading is unknown a number of authors propose different pressure loads, varying in form, application area and magnitude. The objective of this paper is to investigate the potential contribution of pressure loading to composite specimen damage. This is achieved through a simulation study using an established modelling approach for composite damage prediction. The study examines the proposed shockwave loads from the literature. The simulation results are compared with measured test specimen damage examining the form and scale of damage. The results for the first time quantify the significance of pressure loading, demonstrating that although a pressure load can cause damage consistent with that measured experimentally, it has a negligible contribution to the overall scale of damage. Moreover the requirements for a pressure to create the damage behaviours typically witnessed in testing requires that the pressure load be within a very precise window of magnitude and loading area.
机译:实验性工作表明,雷击损坏的组件是由机械负载引起的。随着压力负荷的轮廓未知,许多作者提出了不同的压力载荷,不同的形式,应用区域和幅度变化。本文的目的是探讨压力载荷对复合标本损伤的潜在贡献。这是通过使用既定建模方法进行仿真研究来实现的,用于复合损伤预测。该研究检查了来自文献的建议的冲击波负荷。将模拟结果与测量试样损伤进行比较,检查损伤的形式和规模。第一次的结果量化了压力负荷的重要性,表明,尽管压力负荷可能导致实验测量的损坏,但它对整体损坏的贡献可以忽略不计。此外,对测试中通常见证的压力的要求要求压力负荷在非常精确的幅度和装载区域内。

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