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Vibration and Shock Isolation Performance of a Commercial Semi-Active Vehicle Seat Damper

机译:商用半主动式汽车座椅减震器的振动和冲击隔离性能

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摘要

Vibration and shock isolation pose conflicting design requirements in vehicle seating; thus, conventional passive seat suspensions are typically designed to optimize either vibration or shock isolation, depending on the application. Semi-active suspensions can significantly reduce this tradeoff, providing additional vibration and/or shock protection. For this experiment, a commercial vehicle seat was excited by a simulated pothole and random vibration containing shocks with both the standard passive damper and a commercial semi-active damper. The input vibration required to cause end-stop impacts, and the vibration and shock isolation performance were measured and compared. The results showed that the semi-active damper Significantly reduced VDV ratios as well while improving Overall.
机译:振动和隔震在车辆座椅中提出了相互矛盾的设计要求;因此,取决于应用,常规的被动式座椅悬架通常被设计为优化振动或冲击隔离。半主动悬架可以大大减少这种折衷,从而提供额外的振动和/或冲击保护。对于该实验,商用汽车座椅被模拟的坑洼和随机振动激发,该振动包含标准无源阻尼器和商用半主动阻尼器的震动。测量并比较了引起末端止挡冲击所需的输入振动以及振动和冲击隔离性能。结果表明,半主动减振器也显着降低了VDV比率,同时改善了总体。

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