Optimal Structure of Fiber-reinforced Flywheels with Maximized Energy Density
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概要
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The optimal structure which maximizes energy densities (energy/weight and energy/volume) is discussed for energy storage flywheels made of high specific strength fiber-reinforced plastics. The results show that the density, thickness, and total stress i.e. sum of the radial and circumferential stresses should be constant in the flywheel. Additionally, the elastic moduli should be controlled so that the stresses are proportional to the strengths in the radial and circumferential directions.
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