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Experimental investigation on the vibration tuning of a shell with a shape memory alloy ring

机译:形状记忆合金环壳体振动调谐的实验研究

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This paper presents a new design of a smart ring with motion actuators made of a shape memory alloy (SMA). The mechanical properties of the SMA actuator were investigated at room (25 degrees C) and high (90 degrees C) temperatures to better understand its characteristics. The results show that the smart ring with an SMA not only shows good stability and rapid effectiveness in the vibration control of the test shell, but observably eliminates the nonlinear vibration characteristics due to contact and rubbing between the ring and shell during the heating process. The smart ring also shows excellent performance in the isolation of transient vibration resulting from impact or random loads. With regard to impact loads, the response peak value can reduce by 57.4% in most cases, while the value is 38.7% for random excitations. The study shows the feasibility of using the SMA material for potential applications of vibration tuning the casings of aero-engines.
机译:本文提出了一种新的智能环设计,该环带有由形状记忆合金(SMA)制成的运动执行器。在室温(25摄氏度)和高温(90摄氏度)下对SMA执行器的机械性能进行了研究,以更好地了解其特性。结果表明,具有SMA的智能环不仅在测试壳体的振动控制中显示出良好的稳定性和快速有效性,而且还可以观察到消除了加热过程中由于环与壳体之间的接触和摩擦而产生的非线性振动特性。智能环在隔离由于冲击或随机载荷引起的瞬态振动方面也表现出出色的性能。对于冲击载荷,在大多数情况下,响应峰值可以降低57.4%,而对于随机激励,响应峰值为38.7%。研究表明,将SMA材料用于对航空发动机机壳进行振动调谐的潜在应用是可行的。

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