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Experimental Approach to Active Mounts Using Electromagnetic Actuator and Rubber with Consideration of Shock Resistance for Naval Shipboard Equipment

机译:用电磁致动器和橡胶考虑海军船舶设备抗冲击性机架的实验方法

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摘要

There is demand for stringent vibration isolation within machine installations in order to achieve maximum performance or to satisfy otherwise extreme criteria, particularly, when there is a strong source of vibration such as a motor pump. It is frequently necessary to prevent the transmission of these vibrations to other parts of the system for passenger comfort in vehicles, ships, trains, etc., or for the protection of delicate electronic equipment. In the defense sector, the need for equipment which is better at avoiding detection has led researchers to focus more on improving vibration isolation. In this paper, an active mount combined with a passive rubber mount and an electromagnetic actuator is proposed and examined for use in naval shipboard equipment. The electromagnetic actuator is suggested for improving performance and overcoming its inherent limitations which are caused by the friction between the magnet and coil. The design specifications of an active mount, such as required force, displacement, and frequency characteristics, are identified for the self-excited pump system, and then an electromagnetic actuator active mount is redesigned with considering the shape of the passive rubber mount and shock resistance. The performance was examined on the single active mount using an external exciter, which could be simplified as two-degree-of-freedom system, and also confirmed experimentally on an active mount system with four mounts using a motor system. From the results of applying the proposed electromagnetic active mount, a vibration reduction of about 20 dB for the motor equipment was observed for the excited frequency components of 1,600 rpm and its two harmonic components.
机译:有以达到最大性能或满足否则极端条件,对于机器安装内严格隔振需求特别地,当存在的振动的强源,如马达泵。这是经常需要防止乘客舒适的车辆,船舶,火车等这些振动对系统的其它部分的传输,或者用于精密电子设备的保护。在国防领域,对设备的需求,这是更好的避免检测,导致研究人员能够更专注于提高隔振。在本文中,有源支座与被动橡胶组合支架和电磁致动器,提出并检查在海军船舶设备使用。电磁致动器被建议用于提高性能和克服它们由磁体和线圈之间的摩擦引起的其固有的局限性。活性的设计规格安装,如所需的力,位移,和频率特性,被识别为自激泵系统,然后装入和耐冲击性的电磁致动器主动悬置被重新设计,考虑到被动橡胶的形状。的性能上的单个活性检查安装件使用外部激励器,它可以被简化为两个度的自由度系统,也与使用马达系统4个安装实验确认的活性安装系统上。从施加的结果所提出的电磁主动悬置,观察1600转的激发频率分量和它的两个谐波分量的大约20dB的马达设备的振动减少。

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