DETERMINATION OF THE ELASTIC CONSTANTS OF MATERIALS, IN THE FORM OF PLATES, BY A FREE VIBRATION METHOD
โ Scribed by V. Marchand; J. Authesserre; J. Pouyet; C. Bacon
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 527 KB
- Volume
- 194
- Category
- Article
- ISSN
- 0022-460X
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โฆ Synopsis
The problem of characterizing thin layer ceramic deposited by plasma spraying has led the authors to develop an original means to determine materials, elastic constants by using a free vibration method. This paper gives an overview of an experimental set-up used for the elastic properties measurement of a free circular plate at room temperature or at higher temperature (1000ยฐC). This method is based on analysis of the natural frequencies of vibration recorded by a microphone. Identification of experimental natural frequencies and modal parameters that characterize the mode shapes, calculated analytically by using Mindlin theory, enables the Young's modulus and Poisson ratio of the material tested to be determined. Analytical and experimental results are compared over a frequency range from 0 to 20 kHz.
๐ SIMILAR VOLUMES
The aim of the work reported here is to provide a single non-destructive test to determine the elastic constants of an orthotropic material by studying the free vibrations of a rectangular plate in completely free boundary conditions. After the experimental impulse technique to measure the natural f
Utilizing the superposition method, a solution is obtained for the free vibration eigenvalues of Mindlin plates resting on uniform lateral elastic edge support. Subsequently, it is shown how minor modifications to the eigenvalue matrix permit the incorporation of the additional effects of rotational