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Low-frequency vibroisolation mounting of power plants for new generation airplanes with engines of extra-high by-pass ratio

机译:带有超高旁通比发动机的新一代飞机的动力装置的低频振动隔离安装

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Compliance of aircraft with new noise standards defines the tendency to switch to extra-high bypass ratio engines. Substantial noise redistribution has occurred in the aircraft of the new generation. While jet noise has been reduced dramatically, the engine still remains the basic source of noise, which is a fan noise. In the forward hemisphere, beside the discrete components at fan blade frequency, long row of discrete components has been observed around the principal blade frequencies as result of Shockwave influence. This phenomenon is called "buzz-saw noise". Fan shaft frequency reduction is one of the necessary measures for Shockwaves control. Due to the decrease of frequency, the vibration spectrum shifts towards the low-frequency range. Such components will determine dynamical impact spectrum of power plant, transmitted through mounting to the airframe construction. An airframe typically possesses dozens of oscillation modes in the low-frequency spectrum part. Interaction of some of them with the influence of power plant may generation of discrete low-frequency high-level noise components in cabin. We have designed a new low frequency attachment containing built-in elastic elements with non-linear characteristics and with quasi-zero stiffness zone at proof load by cruise mode.
机译:飞机符合新的噪声标准定义了转向超高旁路比发动机的趋势。新一代飞机已发生大量噪声重新分配。尽管喷射噪声已大大降低,但发动机仍然是噪声的基本来源,这是风扇噪声。在前半球,在风扇叶片频率处的离散分量旁边,由于冲击波的影响,在主要叶片频率附近观察到了长行的离散分量。这种现象称为“嗡嗡声”。降低风扇轴的频率是控制冲击波的必要措施之一。由于频率降低,振动频谱向低频范围移动。此类组件将确定发电厂的动态冲击频谱,该频谱通过安装传递到机身结构。机身通常在低频频谱部分具有数十种振荡模式。其中一些与电厂的相互作用可能会在机舱中产生离散的低频高电平噪声分量。我们设计了一种新的低频附件,其中包含具有非线性特性的内置弹性元件,并且在巡航模式下的标准载荷下具有准零刚度区域。

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