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Model Order Reduction for Design of Torsional Disk Couplings

机译:扭转磁盘联轴器设计的模型顺序减少

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Torsional couplings are used to transmit power between various rotating components of power systems while allowing for relatively small misalignments that may otherwise lead to equipment failure. When selecting a proper coupling type and size, one has to consider three important conditions: (1) maximum load applied to the coupling, (2) maximum operation speed and (3) amount of misalignment allowable for normal operation. There are many types of flexible couplings that use various materials for the flexible element of the coupling on the market today. Design of the coupling and the materials used for the flexible elements determine the coupling's operating characteristics. In this project, we study metal disk couplings. Benefits of this type of coupling include: ease of replacement or repair, clear visual feedback of element failure, and the absence of a need for lubrication. The torsional stiffness of a coupling is a major factor relative to the amount of misalignment allowable. Currently, flexible couplings are tested by manufacturers to experimentally determine the torsional stiffness; a process which requires expensive equipment and more importantly employee time to set-up and run. The torsional coupling lumped characteristics, such as torsional- and flexural stiffness, as well as natural frequencies are important for design of the entire power system and have to be as precise as possible. In this work, we have developed an accurate modeling framework for determining these parameters based on a full 3-D finite element model and model-order reduction procedure. Developed methodology was validated by available experimental data from one of the leading manufacturers of torsional couplings.
机译:扭转耦合用于在电力系统的各种旋转部件之间传输功率,同时允许可能导致设备故障的相对较小的未对准。选择适当的耦合类型和尺寸时,必须考虑三个重要条件:(1)施加到耦合的最大负载,(2)最大操作速度和(3)允许正常操作的错位量。有许多类型的柔性联轴器,用于当今市场上的耦合柔性元件使用各种材料。用于柔性元件的耦合和材料的设计决定了耦合的操作特性。在该项目中,我们研究金属磁盘联轴器。这种耦合的好处包括:易于更换或修复,清晰的元素故障的视觉反馈,并且没有需要润滑。偶联的扭转刚度是相对于允许的未对准量的主要因素。目前,制造商测试了柔性联轴器,以实验确定扭转刚度;需要昂贵设备的过程,更重要的是员工时间来设置和运行。扭转耦合集总特性,例如扭转和弯曲刚度,以及固有频率对于整个电力系统的设计是重要的,并且必须尽可能精确。在这项工作中,我们开发了一种准确的建模框架,用于基于完整的3-D有限元模型和模型顺序减少过程来确定这些参数。通过来自扭转联轴器领先制造商之一的可用实验数据验证了开发方法。

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