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Engine to wing structural design under critical loads caused by a propeller blade loss

机译:螺旋桨叶片损失造成的关键载荷下的发动机到机翼结构设计

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To support the propeller blade loss loads in a turboprop aircraft the engine mounting system has to be carefully designed. The joints have to withstand the flight loads, however, during the blade loss event they have to fail before the wing gets damaged. Using a FEM model and Monte Carlo simulation techniques the possible failure sequences for a broad spectrum of flight conditions have been obtained, including different propeller frequencies, blade loss sizes, angular positions where the blade is lost and also material properties. The structural model includes non-linear behavior, damages, and several types of failure together with stochastic variables which can incorporate parameter uncertainties. Finally, the pylon to wing support is designed to guarantee, with high level of confidence, no major hazard on the aircraft due to this dynamical phenomenon.
机译:为了支撑涡轮螺旋桨飞机中螺旋桨叶片的损失载荷,必须仔细设计发动机安装系统。关节必须承受飞行载荷,但是,在叶片丢失的情况下,它们必须在机翼损坏之前失效。使用FEM模型和蒙特卡罗模拟技术,已经获得了针对各种飞行条件的可能的故障序列,包括不同的螺旋桨频率,叶片损失尺寸,叶片损失的角位置以及材料特性。结构模型包括非线性行为,损坏和几种类型的故障,以及可能包含参数不确定性的随机变量。最后,塔吊到机翼的支撑设计可以确保高度的信心,不会因为这种动态现象而对飞机造成重大危害。

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