Modelling and Simulation in High-Fidelity Crash Analysis of NGCTR-TD Composite Wing

L. Di Palma, M. Nardone, C. Pezzella, M. Belardo
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Abstract

This paper presents a methodology that involves the development of high-fidelity modeling and simulation procedures aimed at supporting virtual certification for crashworthiness requirements specific to tiltrotor aircraft, addressing the critical need for accurate safety requirement fulfillment predictions and weight containment of wing. The unique crashworthiness requirement for tiltrotor wings necessitates a design that can ensure a controlled failure during survivable crash events. This is to alleviate the inertial load acting on the fuselage, thereby protecting occupants from injuries and fire while ensuring the integrity of escape paths. The objective of this methodology is to simulate the crash effects on the entire wing using explicit, non-linear, and time-dependent FE analysis. This approach verifies the spanwise placement of the frangible sections, the mode of failure, the loads acting on the fuselage links, and the acceleration transmitted to the structure. This study focuses on a standalone analysis.
NGCTR-TD 复合翼高保真碰撞分析中的建模与仿真
本文介绍了一种方法,涉及高保真建模和仿真程序的开发,旨在支持倾转翼飞机特有的耐撞性要求的虚拟认证,满足准确预测安全要求和控制机翼重量的关键需求。倾转翼飞机机翼独特的耐撞性要求要求设计能够确保在可幸存的碰撞事件中发生受控失效。这是为了减轻作用在机身上的惯性载荷,从而保护乘员免受伤害和火灾,同时确保逃生通道的完整性。该方法的目的是使用显式、非线性和随时间变化的有限元分析来模拟整个机翼的碰撞效应。这种方法可验证易碎部分的跨度布置、失效模式、作用在机身连接件上的载荷以及传递到结构上的加速度。本研究侧重于独立分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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