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Identification of the Damping Properties of Rigid Isotropic Materials by Studying the Damping Flexural Vibrations of Test Specimens

机译:研究试样阻尼弯曲振动识别刚性各向同性材料的阻尼性能

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摘要

A technique for determining the damping properties of a rigid isotropic material from the experimental data on the damping capacity of elongated cantilever-fixed test specimens due to the internal and external aerodynamic damping is proposed. The following two methods for eliminating the aerodynamic damping component are considered: the extrapolation of the data on the damping capacity of a series of test specimens of different widths to the point corresponding to the zero width and the theoretical-experimental approach. The damping properties of the material are determined by the vibration logarithmic decrement depending on the amplitude of the linear deformation. This dependence is represented by a power polynomial. The polynomial coefficients are determined from the minimum condition of the goal function for the positive logarithmic decrement of the material vibrations. These coefficients are sought at the reference point by repeatedly solving the direct problem of determining the damping capacity of the test specimen from the given damping properties of the material. An example is considered to illustrate the identification of the damping properties of steel St.3.
机译:提出了一种用于确定由于内部和外部空气动力学阻尼引起的关于细长悬臂固定试样的阻尼容量的实验数据的刚性各向同性材料的阻尼性能。以下两种用于消除空气动力学阻尼部件的方法被认为是:对不同宽度一系列测试标本的阻尼能力的推断到与零宽度对应的点和理论实验方法的点。根据线性变形的幅度,通过振动对数减量确定材料的阻尼特性。这种依赖性由电力多项式表示。多项式系数由用于材料振动的正对数减量的目标函数的最小条件确定。通过反复解决从材料的给定阻尼性能确定试样的阻尼容量的直接问题,在参考点处寻求这些系数。认为示例说明了钢ST3的阻尼性能的识别。

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