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Elastomeric Structural Attachment Concepts for Aircraft Flap Noise Reduction - Challenges and Approaches to Hyperelastic Structural Modeling and Analysis

机译:用于飞机皮瓣减震的弹性结构附件概念 - 超弹性结构建模和分析的挑战和方法

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Airframe noise is a significant part of the overall noise of transport aircraft during the approach and landing phases of flight. Airframe noise reduction is currently emphasized under the Environmentally Responsible Aviation (ERA) and Fixed Wing (FW) Project goals of NASA. A promising concept for trailing-edge-flap noise reduction is a flexible structural element or link that connects the side edges of the deployable flap to the adjacent main-wing structure. The proposed solution is distinguished by minimization of the span-wise extent of the structural link, thereby minimizing the aerodynamic load on the link structure at the expense of increased deformation requirement. Development of such a flexible structural link necessitated application of hyperelastic materials, atypical structural configurations and novel interface hardware. The resulting highly-deformable structural concept was termed the FLEXible Side Edge Link (FLEXSEL) concept. Prediction of atypical elastomeric deformation responses from detailed structural analysis was essential for evaluating feasible concepts that met the design constraints. The focus of this paper is to describe the many challenges encountered with hyperelastic finite element modeling and the nonlinear structural analysis of evolving FLEXSEL concepts. Detailed herein is the nonlinear analysis of FLEXSEL concepts that emerged during the project which include solid-section, foam-core, hollow, extended-span and pre-stressed concepts. Coupon-level analysis performed on elastomeric interface joints, which form a part of the FLEXSEL topology development, are also presented.
机译:机身噪音是运输飞机在飞行中的运输飞机整体噪音的重要组成部分。在NASA的环保航空(时代)和固定翼(FW)项目目标下,目前强调了机身降噪。用于后缘襟翼噪声降低的有希望的概念是柔性结构元件或连杆,其将可展开翼片的侧边缘连接到相邻的主翼结构。所提出的解决方案通过最小化结构链路的跨度方面来区分,从而以增加变形要求的牺牲最小化链路结构上的空气动力学载荷。开发这种灵活的结构链接所需的超弹性材料,非典型结构配置和新颖的界面硬件。由此产生的高度可变形的结构概念被称为柔性侧边缘链路(FlexSel)概念。来自详细结构分析的非典型弹性响应的预测对于评估符合设计限制的可行概念至关重要。本文的焦点是描述具有超弹性有限元建模的许多挑战以及不断变化的弹性概念的非线性结构分析。具体实施方式是在项目期间出现的FlexSel概念的非线性分析,包括固体部分,泡沫芯,空心,延伸跨度和预应力概念。还提出了对弹性界面接头进行的优惠率分析,其形成FlexSel拓扑开发的一部分。

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