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Modeling and Experimental Study on Adjustable Magneto-rheological Fluid Damper Based on Hydro-pneumatic Suspension of Heavy Vehicles

机译:基于重型车辆液压气动悬架的可调式磁流变减振器的建模与实验研究

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In this paper, the structure and working principle of a new adjustable MRF damper are presented for hydropneumatic suspension system of heavy wheeled vehicle. According to the characteristic design, disc radial orifice valve is developed to meet the adjustable and fail-safe requirements. After its describing the process of compression and rebound strokes of this device, Non-linear mathematic models are created and adopted to perform the damping force analysis. In addition, an experimental setup on a 200 kN servohydraulic testing machine is constructed to test the damping characteristics under different velocities and control currents with a sinusoidal excitation. These tests demonstrate that this new device can offer good performance for the improvement of ride quality and stability in a semi-active suspension.
机译:本文介绍了一种新型的MRF可调式阻尼器的结构和工作原理,该阻尼器用于重型轮式车辆的油气悬挂系统。根据特性设计,开发了碟形径向孔阀以满足可调和故障安全要求。在描述了该设备的压缩和回弹冲程的过程之后,创建了非线性数学模型,并将其用于进行阻尼力分析。此外,在200 kN伺服液压试验机上建立了一个实验装置,以正弦激励测试不同速度和控制电流下的阻尼特性。这些测试表明,该新设备可为改善半主动悬架的行驶质量和稳定性提供良好的性能。

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