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ON THE MODELING OF OPEN AND BREATHING CRACKS OF A CRACKED ROTOR SYSTEM

机译:裂纹转子系统开裂和裂纹的建模

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The modeling of a cracked rotor system with an open or breathing transverse crack is addressed here. The cracked rotor with an open crack model behaves as an asymmetric shaft. Hence, the time-varying area moments of inertia of the cracked section are employed in formulating the periodic finite element stiffness matrix for both crack models which yields a linear time-periodic system. The harmonic balance method (HB) is used in solving the finite element (FE) equations of motions for studying the dynamic behavior of the cracked rotor system. The unique behavior of the whirl orbits during the passage through the subcritical rotational speeds and the sensitivity of these orbits to the unbalance force direction can be used for early crack detection of the cracked rotor for both crack models. These whirl orbits were verified experimentally for the open crack model in the neighborhood of 1/2 of the first critical rotational speed where a good match with the theoretical whirl orbits was observed.
机译:这里讨论带有开裂或通气横向裂纹的裂纹转子系统的建模。具有开裂模型的开裂转子表现为不对称轴。因此,裂纹截面的时变面积惯性矩被用于为两个裂纹模型制定周期有限元刚度矩阵,从而产生线性时间周期系统。谐波平衡法(HB)用于求解运动的有限元(FE)方程,以研究裂纹转子系统的动力学行为。在通过亚临界转速的过程中,涡旋轨道的独特行为以及这些轨道对不平衡力方向的敏感性可用于两个裂纹模型的裂纹转子的早期裂纹检测。这些旋涡轨道在第一临界转速的1/2附近进行了开放裂纹模型的实验验证,并观察到了与理论旋涡轨道的良好匹配。

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