首页> 外文学位 >Dynamics of fluidic devices with applications to rotor pitch links.
【24h】

Dynamics of fluidic devices with applications to rotor pitch links.

机译:流体装置的动力学及其在转子变矩器中的应用。

获取原文
获取原文并翻译 | 示例

摘要

Coupling a Fluidic Flexible Matrix Composite (F2MC) to an air-pressurized fluid port produces a fundamentally new class of tunable vibration isolator. This fluidlastic device provides significant vibration reduction at an isolation frequency that can be tuned over a broad frequency range. The material properties and geometry of the F2MC element, as well as the port inertance, determine the isolation frequency. A unique feature of this device is that the port inertance depends on pressure so the isolation frequency can be adjusted by changing the air pressure. For constant port inertance, the isolation frequency is largely independent of the isolated mass so the device is robust to changes in load. A nonlinear model is developed to predict isolator length and port inertance. The model is linearized and the frequency response calculated. Experiments agree with theory, demonstrating a tunable isolation range from 9 Hz to 36 Hz and transmitted force reductions of up to 60 dB at the isolation frequency.;Replacing rigid pitch links on rotorcraft with coupled fluidic devices has the potential to reduce the aerodynamic blade loads transmitted through the pitch links to the swashplate. Analytical models of two fluidic devices coupled with three different fluidic circuits are derived. These passive fluidlastic systems are tuned, by varying the fluid inertances and capacitances of each fluidic circuit, to reduce the transmitted pitch-link loads. The different circuit designs result in transmitted pitch link loads reduction at up to three main rotor harmonics. The simulation results show loads reduction at the targeted out-of-phase and in-phase harmonics of up to 88% and 93%, respectively. Experimental validation of two of the fluidic circuits demonstrates loads reduction of up to 89% at the out-of-phase isolation frequencies and up to 81% at the in-phase isolation frequencies.;Replacing rigid pitch links on rotorcraft with fluidic pitch links changes the blade torsional impedance. At low frequency, the pitch link must have high impedance to pass through the pilot's collective and cyclic commands to control the aircraft. At higher frequencies, however, the pitch-link impedance can be tuned to change the blade pitching response to higher harmonic loads. Active blade control to produce higher harmonic pitch motions has been shown to reduce hub loads and increase rotor efficiency. This work investigates whether fluidic pitch links can passively provide these benefits. An analytical model of a fluidic pitch link is derived and incorporated into a rotor aeroelastic simulation for a rotor similar to that of the UH-60. Eighty-one simulations with varied fluidic pitch link parameters demonstrate that their impedance can be tailored to reduce rotor power and all six hub forces and moments. While no impedance was found that simultaneously reduced all components, the results include cases with reductions in the lateral 4/rev hub force of up to 91% and 4/rev hub pitching moment of up to 67%, and main rotor power of up to 5%.
机译:将流体柔性基质复合材料(F2MC)耦合到空气加压流体端口可产生根本上新型的可调振动隔离器。这种流体弹性装置在可以在很宽的频率范围内进行调节的隔离频率下,可显着降低振动。 F2MC元件的材料特性和几何形状以及端口惯性决定了隔离频率。该设备的独特之处在于端口惯性取决于压力,因此可以通过改变气压来调节隔离频率。对于恒定的端口惯性,隔离频率在很大程度上与隔离的质量无关,因此该器件可抵抗负载变化。开发了一个非线性模型来预测隔离器的长度和端口惯性。将模型线性化并计算频率响应。实验与理论相吻合,证明了在9 Hz至36 Hz范围内可调的隔离范围,并且在隔离频率下传递的力降低了60 dB .;用耦合的流体装置代替旋翼航空器上的刚性变桨连杆,有可能降低气动叶片载荷通过俯仰连杆传递到斜盘。推导了与三个不同流体回路耦合的两个流体装置的分析模型。通过改变每个流体回路的流体惯性和电容来调整这些无源流体弹性系统,以减少传递的变桨连接载荷。不同的电路设计可在多达三个主转子谐波的情况下减少传递的节距连杆负载。仿真结果表明,在目标异相和同相谐波处的负载减少分别高达88%和93%。对两个流体回路的实验验证表明,在异相隔离频率下负载降低了89%,在同相隔离频率下降低了81%。叶片扭转阻抗。在低频时,俯仰连杆必须具有高阻抗,才能通过飞行员的集体和周期性命令来控制飞机。但是,在较高的频率下,可以调整变桨距链接阻抗,以改变叶片对较高谐波负载的变桨响应。主动叶片控制产生更高的谐波俯仰运动已被证明可以减少轮毂负载并提高转子效率。这项工作调查了流体节距连杆是否可以被动地提供这些好处。推导出流体节距连杆的分析模型,并将其纳入与UH-60类似的转子气动弹性仿真中。具有变化的流体螺距链接参数的八十一次仿真表明,可以调整其阻抗以减少转子功率以及所有六个轮毂力和力矩。虽然没有发现阻抗会同时减少所有分量,但结果包括横向4 / rev轮毂力降低达91%,4 / rev轮毂俯仰力矩降低达67%,主旋翼功率降低达5%的情况。 5%。

著录项

  • 作者

    Scarborough, Lloyd H., III.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Mechanical.;Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号