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Theoretical-Experimental Method for Determining the Parameters of Damping Based on the Study of Damped Flexural Vibrations of Test Specimens. 3. Identification of the Characteristics of Internal Damping© 2014, Springer Science+Business Media New York. The logarithmic decrement of damped vibrations

Theoretical-Experimental Method for Determining the Parameters of Damping Based on the Study of Damped Flexural Vibrations of Test Specimens. 3. Identification of the Characteristics of Internal Damping© 2014, Springer Science+Business Media New York. The logarithmic decrement of damped vibrations

Kinematic viscosity of liquid Al-Cu alloys and the decrement of damping of rotating oscillations of a cylindrical crucible with a melt was used. Viscosity

Identification of the elastic and damping characteristics of carbon fiber-reinforced plastic based on a study of damping flexural vibrations of test specimens in the range of 0–120 Hz. The amplitude dependences of the logarithmic vibration decrements of the carbon fiber

Identification of the elastic and damping characteristics of carbon fiber-reinforced plastic based on a study of damping flexural vibrations of test specimens in the range of 0–120 Hz. The amplitude dependences of the logarithmic vibration decrements of the carbon fiber

Modeling of the resonant vibrations of an elongated plate with an integrated damping coating taking into account the amplitude-dependent internal friction in the material of the damping layers algorithm has been developed to take into account the amplitude dependence of the logarithmic decrements

Experimental determination of damping of plate vibrations in a viscous fluid the decrement of damping vibrations and the aerodynamic-drag coefficient through the dimensionless vibration

The transmission of an acoustic wave through a rectangular plate between barriers and that for stiff building materials, which have, as a rule, small values of the logarithmic decrement

On Direct and Inverse Problems of Logarithmic Potential With Finite Number of Parameters for solving inverse problems of logarithmic potential and that of A. V. Tsirul’skii’s method for solving

The transmission of an acoustic wave through a rectangular plate between barriers and that for stiff building materials, which have, as a rule, small values of the logarithmic decrement

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