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Research on Vibration Isolation of Semi-Active Controlled Hydraulic Engine Mount with Air Spring

机译:空气弹簧半主动控制液压发动机悬置隔振的研究

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摘要

Aiming at the abnormal vibration of driver seat of a passenger car in idle condition, vibration acceleration of engine, frame and seat rail was tested to identify vibration sources. Order tracking and spectrogram analysis indicated that the second order self-excitation of engine was the main cause. To solve the problem, semi-active controlled hydraulic engine mount with air spring of which characteristics could shift between a high dynamic stiffness and a low one was applied. Then the structure and principle of the mount with variable characteristics was introduced and control mode was analyzed. Dynamic characteristics were obtained by bench test. With sample mount applied, vibration of seat rail was tested again in multiple vehicle and engine working conditions. Dates showed that abnormal vibration in idle condition was extremely reduced and the mount could also meet the requirement of engine to dynamic stiffness in driving conditions.
机译:针对怠速情况下乘用车驾驶员座椅的异常振动,对发动机,车架和座椅导轨的振动加速度进行了测试,以确定振动源。阶次跟踪和频谱图分析表明,发动机的二次自激是主要原因。为了解决该问题,应用了具有空气弹簧的半主动控制的液压发动机悬置,该悬架的特性可以在高动态刚度和低动态刚度之间转换。然后介绍了可变特性支架的结构和原理,并分析了控制方式。通过台架试验获得动态特性。施加样品支架后,在多种车辆和发动机工作条件下再次测试了座椅导轨的振动。数据表明,怠速情况下的异常振动已大大降低,该安装座也可以满足发动机在行驶条件下对动态刚度的要求。

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