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Evaluation of vibration and shock attenuation performance of a suspension seat with a semi-active magnetorheological fluid damper

机译:带有半主动磁流变流体阻尼器的悬架座椅的振动和冲击衰减性能评估

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The potential benefits of a semi-active magnetorheological (MR) damper in reducing the incidence and severity of end-stop impacts of a low natural frequency suspension seat are investigated. The MR damper considered is a commercially developed product, referred to as "Motion Master semi-active damping system" and manufactured by Lord Corporation. The end-stop impact and vibration attenuation performance of a seat equipped with such a damper are evaluated and compared with those of the same seat incorporating a conventional damper. The evaluation is performed on a servo-hydraulic vibration exciter by subjecting the seat-damper combinations to a transient excitation with dominant frequency close to that of the seat and continuous random excitation class EM1 applicable to earth-moving machinery, and a more severe excitation realized by amplifying the EM1 excitation by 150%, Tests are performed for medium and firm settings of the MR damper and for seat height positions corresponding to mid-ride and +/-2.54 and +/-5.08 cm relative to mid-ride. The results indicate that significantly higher levels of transient excitation are necessary to induce end-stop impacts for the seat equipped with the MR damper, particularly when set for firm damping, the difference with the conventional damper being more pronounced for seat positions closer to the end-stops. Under the EM1 excitation, the results indicate that under conditions which would otherwise favour the occurrence of end-stop impacts for a seat equipped with a conventional damper, the use of the MR damper can result in considerably less severe impacts and correspondingly lower vibration exposure levels, particularly when positioned closer to its compression or rebound limit stop. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 15]
机译:研究了半主动磁流变(MR)减震器在降低低频自然频率悬架座椅的末端止动冲击的发生率和严重性方面的潜在优势。所考虑的MR阻尼器是商业开发的产品,被称为Lord Motion的“ Motion Master半主动阻尼系统”。评估配备有这种减震器的座椅的终端止动冲击和减振性能,并将其与装有常规减震器的同一座椅进行比较。对伺服液压振动激励器进行评估,方法是使座椅-减振器组合经受主频率接近座椅的瞬态激励,以及适用于土方机械的连续随机激励等级EM1,并实现更严格的激励通过将EM1激励放大150%,对MR阻尼器的中等和牢固设置以及与中间骑乘以及相对于中间骑乘分别为+/- 2.54和+/- 5.08 cm的座椅高度位置进行了测试。结果表明,对于装备有MR阻尼器的座椅,要引起端部停止冲击,必须要有更高水平的瞬态激励,特别是在设置牢固阻尼时,与常规阻尼器的区别对于靠近末端的座椅位置更为明显。 -停止。在EM1激励下,结果表明,在某些情况下,如果该条件有利于配备传统减震器的座椅发生端部止动冲击,则使用MR减震器可减少严重的冲击,并相应地降低振动暴露水平,尤其是在靠近其压缩或回弹限位器的位置。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:15]

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