A numerical method for the simulation of elastic wave propagation is presented. Some important practical requirements for ยฎnite dierence methods are formulated. To satisfy these requirements, the proposed method is based on two key features. Firstly, the approximate solution is represented as a set
Travelling Wave Ultrasonic Motors, Part II: A Numerical Method For The Flexural Vibrations Of The Stator
โ Scribed by P. Hagedorn; J. Wallaschek; W. Konrad
- Publisher
- Elsevier Science
- Year
- 1993
- Tongue
- English
- Weight
- 233 KB
- Volume
- 168
- Category
- Article
- ISSN
- 0022-460X
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โฆ Synopsis
A finite difference scheme is used to calculate the forced transverse vibrations of thin annular plates with radially varying thickness. Under the assumption of harmonic motion, the governing partial differential equation reduces to a system of ordinary differential equations with variable coefficients. The numerical scheme that solves this system for various boundary conditions is successfully tested (v s). known analytical solutions, and it is subsequently used to compute the forced vibrations of plates with more complicated thickness variations. The numerical results for these plates are compared to experimental results and found to be in good agreement. The effects of the rotatory inertias are studied and found to be important at high frequencies.
๐ SIMILAR VOLUMES
This is the second of two companion papers which collectively present a method for the analysis of complex structures built-up from sti! beams and #exible plates. The method separates the sti! parts of the structure (which support the vibration sources) and the #exible parts of the structure, models