Feasibility Evaluation of Optoelectronic Strain Measurement for Flywheel Rotors

Matthias Rath, R. Preßmair, B. Schweighofer, G. Brasseur
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引用次数: 3

Abstract

The rotor is a core element of a Flywheel Energy Storage System (FESS) and its condition has to be monitored continuously to assure safe operation. Modern flywheel rotors are usually made of carbon-fiber-reinforced polymer (CFRP) composites because of their high inherent specific energy density. Throughout the service life the stress state inside the rotor changes due to long-term effects of the material. Therefore, the strain profile is an interesting measure for the rotor’s health condition. The chosen measurement principle requires a surface finish of the rotor with a periodic pattern of contrasting areas. A preliminary evaluation of the feasibility of different optoelectronic measurement setups with focus on different rotor materials, surface finishes and the high rotational speed of the rotor was conducted. Adhesion properties and influences of different rotor surface finishes as well as the influence of the photodiode’s rise time are investigated.
飞轮转子光电应变测量的可行性评价
转子是飞轮储能系统(FESS)的核心部件,为了保证飞轮储能系统的安全运行,必须对其状态进行持续监测。现代飞轮转子由于具有较高的固有比能密度,通常采用碳纤维增强聚合物(CFRP)复合材料制成。在整个使用寿命中,由于材料的长期影响,转子内部的应力状态会发生变化。因此,应变曲线是衡量转子健康状况的一个有意义的指标。所选择的测量原理要求转子的表面光洁度与对比区域的周期性模式。针对不同的转子材料、表面光洁度和转子的高转速,对不同光电测量装置的可行性进行了初步评估。研究了不同表面光洁度对转子粘附性能的影响以及光电二极管上升时间的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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