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Simulating the Response of a Composite Honeycomb Energy Absorber: Part 2. Full-Scale Impact Testing

机译:模拟复合蜂窝式能量吸收器的响应:第2部分。全面冲击测试

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摘要

NASA has sponsored research to evaluate an externally deployable composite honeycomb designed to attenuate loads in the event of a helicopter crash. The concept, designated the Deployable Energy Absorber (DEA), is an expandable Kevlar® honeycomb. The DEA has a flexible hinge that allows the honeycomb to be stowed collapsed until needed during an emergency. Evaluation of the DEA began with material characterization of the Kevlar®-129 fabric/epoxy, and ended with a full-scale crash test of a retrofitted MD-500 helicopter. During each evaluation phase, finite element models of the test articles were developed and simulations were performed using the dynamic finite element code, LS-DYNA®. The paper will focus on simulations of two full-scale impact tests involving the DEA, a mass-simulator and a full-scale crash of an instrumented MD-500 helicopter. Isotropic (MAT24) and composite (MAT58) material models, which were assigned to DEA shell elements, were compared. Based on simulations results, the MAT58 model showed better agreement with test.
机译:美国国家航空航天局(NASA)赞助了一项研究,以评估可在直升机坠毁时减轻载荷的外部可展开复合蜂窝。被称为可展开能量吸收器(DEA)的概念是可扩展的Kevlar®蜂窝。 DEA具有可弯曲的铰链,可将蜂窝收起收起,直到在紧急情况下需要时才收起。 DEA的评估始于对Kevlar®-129织物/环氧树脂的材料表征,最后是对改装的MD-500直升机进行全面的碰撞测试。在每个评估阶段,都开发了测试文章的有限元模型,并使用动态有限元代码LS-DYNA®进行了仿真。本文将着重于模拟两个全面的冲击试验,包括DEA,一个质量模拟器和一台装有仪器的MD-500直升机的全面坠毁。比较了分配给DEA壳单元的各向同性(MAT24)和复合材料(MAT58)材料模型。根据仿真结果,MAT58模型与测试结果具有更好的一致性。

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