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Determination of the Orthotropic Material Behavior of Stator Bars and of the Material Characteristics of the Space Brackets
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作者 Bemd Schlegl Florian Schonleitner +2 位作者 Andreas Mare Fritz Neumayer Franz Heitmeir 《Journal of Energy and Power Engineering》 2013年第7期1352-1361,共10页
The end windings of generators are excited to vibrations due to electromagnetic forces which can cause severe damage (especially in case of resonance) and noise. To avoid this, it is important to predict the natural... The end windings of generators are excited to vibrations due to electromagnetic forces which can cause severe damage (especially in case of resonance) and noise. To avoid this, it is important to predict the natural frequencies and modes of the end windings with finite elements during the design process. Hence, a material model of the complete stator bar is necessary. This paper shows the development of such a material model. The composite structure of a stator bar is quite complex and makes it impossible to provide a quick calculation of the eigenvalues. That is the reason for using a suitable, homogeneously, geometry based solid model. Special attention was paid to the experimental determination of the material characteristics of the orthotropic composite space brackets. The numerical results have been evaluated against measurements. Eigenvalues, Young's modulus, and shear modulus have been experimentally investigated. 展开更多
关键词 Electrical machines end windings finite element method generators hydro generator power generation stator bars vibration problems.
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