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Studying the Effect of Cracks on the Ultrasonic Wave Propagation in a Two Dimensional Gearbox Finite Element Model

机译:在二维齿轮箱有限元模型中研究裂纹对超声波传播的影响

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Gearbox components of aerospace structures are typically made of brittle materials with high fracture toughness, but susceptible to fatigue failure due to continuous cyclic loading. Structural Health Monitoring (SHM) methods are used to monitor the crack growth in gearbox components. Damage detection methodologies developed in laboratory-scale experiments may not represent the actual gearbox structural configuration, and are usually not applicable to real application as the vibration and wave properties depend on the material, structural layers and thicknesses. Also, the sensor types and locations are key factors for frequency content of ultrasonic waves, which are essential features for pattern recognition algorithm development in noisy environments. Therefore, a deterministic damage detection methodology that considers all the variables influencing the waveform signature should be considered in the preliminary computation before any experimental test matrix. In order to achieve this goal, we developed two dimensional finite element models of a gearbox cross section from front view and shaft section. The cross section model consists of steel revolving teeth, a thin layer of oil, and retention plate. An ultrasonic wave up to 1 MHz frequency is generated, and waveform histories along the gearbox are recorded. The received waveforms under pristine and cracked conditions are compared in order to analyze the crack influence on the wave propagation in gearbox, which can be utilized by both active and passive SHM methods.
机译:航空航天结构的齿轮箱部件通常由具有高断裂韧性的脆性材料制成,但由于连续的循环载荷而容易发生疲劳破坏。结构健康监测(SHM)方法用于监测齿轮箱组件中的裂纹扩展。在实验室规模的实验中开发的损伤检测方法可能无法代表齿轮箱的实际结构,并且通常不适用于实际应用,因为振动和波动特性取决于材料,结构层和厚度。同样,传感器的类型和位置也是超声波频率含量的关键因素,这是嘈杂环境中模式识别算法开发的基本特征。因此,在任何实验测试矩阵之前的初步计算中应考虑一种确定性的损伤检测方法,该方法应考虑所有影响波形签名的变量。为了实现此目标,我们从前视图和轴截面开发了变速箱横截面的二维有限元模型。横截面模型由钢制旋转齿,薄薄的一层油和固定板组成。产生频率高达1 MHz的超声波,并记录齿轮箱沿线的波形历史。比较原始和破裂条件下的接收波形,以分析裂纹对变速箱中波传播的影响,主动和被动SHM方法均可利用。

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