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DESIGN PROCEDURE OF AN EDDY CURRENT DAMPER TYPE REACTION FORCE COMPENSATION (RFC) MECHANISM FOR A LINEAR MOTOR MOTION STAGE

机译:用于线性电机运动阶段的涡流阻尼型反作用力补偿(RFC)机构的设计步骤

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Base vibration of a linear motor motion stage has been reduced with passive RFC mechanism based on movable magnet track and springs. This paper presents design procedure of an eddy-current damper (ECD) type RFC mechanism for a linear motor motion stage. The RFC mechanism with a movable magnet track and an ECD can overcome disadvantages of the spring based RFC mechanism such as resonance and difficulty of assembly due to spring. A lumped parameter model for the ECD type RFC mechanism is derived considering sinusoidal magnetic flux density and effective width of the ECD according to magnet track motion. Then, a design procedure for ECD type RFC mechanism is proposed to meet system requirements such as transmission ratio of reaction force and maximum magnet track motion. Design example illustrates the effectiveness of the proposed design procedure for ECD type RFC mechanism.
机译:基于可移动磁铁轨道和弹簧的无源RFC机构,降低了线性电机运动阶段的基础振动。本文介绍了用于线性电机运动级的涡流阻尼器(ECD)型RFC机构的设计步骤。具有可移动磁体轨道和ECD的RFC机构可以克服基于弹簧的RFC机制的缺点,例如由于弹簧由于组装的谐振和难度。考虑根据磁体轨道运动,考虑正弦磁通密度和ECD的有效宽度,导出了ECD型RFC机构的集总参数模型。然后,提出了一种用于ECC型RFC机制的设计过程,以满足系统要求,例如反作用力和最大磁体轨道运动的传动比。设计示例说明了ECD型RFC机制所提出的设计过程的有效性。

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