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DEVICES AND METHODS FOR INCREASING ENERGY AND/OR POWER DENSITY IN COMPOSITE FLYWHEEL ENERGY STORAGE SYSTEMS

机译:在复合飞轮储能系统中提高能量和/或功率密度的装置和方法

摘要

A flywheel formed of a composite material having fibers, oriented substantially in a circumferential direction around the flywheel, embedded in a matrix material. The flywheel having an inner surface, an outer surface, and a thickness therebetween and defining an axis of rotation. A plurality of load masses are distributed circumferentially on the inner surface at a longitudinal segment along the axis. A rotation of the flywheel about the axis with a rotational velocity generating hoop stress In the fibers in the circumferential direction and through-thickness stress is generated in the matrix material in a radial direction. Each load mass produces a force on the inner surface operative to reduce the maximum through-thickness stress in the matrix material as the flywheel rotates about the axis. The rotational velocity otherwise sufficient to produce structural failure of the matrix material produces structural failure of the fibers and not the matrix material.
机译:由复合材料形成的飞轮,其具有嵌入在基质材料中的纤维,该纤维基本上围绕飞轮沿周向定向。飞轮具有内表面,外表面和其间的厚度并限定旋转轴线。多个载荷质量沿轴线的纵向段在内表面上周向分布。飞轮绕轴的旋转伴随着旋转速度,在纤维上沿周向产生环向应力,在基体材料上沿径向产生贯穿厚度应力。当飞轮绕轴旋转时,每个负载质量都会在内表面上产生一个力,该力可减小基体材料中的最大厚度穿透应力。否则足以产生基体材料的结构破坏的转速产生纤维而不是基体材料的结构破坏。

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