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Modeling Air-Spring Suspension System of the Truck Driver Seat

机译:卡车驾驶员座椅的空气弹簧悬架系统

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The suspension system of a heavy truck's driver seat plays an important role to reduce the vibrations transmitted to the seat occupant from the cab floor. Air-spring is widely used in the seat suspension system, for the reason that its spring rate is variable and it can make the seat suspension system keep constant 'tuned' frequency compared to the conventional coil spring. In this paper, vibration differential equation of air-spring system with auxiliary volume is derived, according to the theory of thermodynamic, hydrodynamics. The deformation-load static characteristic curves of air-spring is obtained, by using a numerical solution method. Then, the ADAMS model of the heavy truck's driver seat suspension system is built up, based on the structure of the seat and parameters of the air-spring and the shock-absorber. At last, the model is validated by comparing the simulation results and the test results, considering the seat acceleration PSD and RMS value.
机译:重型卡车驾驶员座椅的悬架系统起着重要作用,以减少从驾驶室地板传递到座椅乘员的振动。空气弹簧广泛用于座椅悬架系统,因为它的弹簧速率是可变的,并且它可以使座椅悬架系统保持与传统螺旋弹簧相比保持恒定的“调谐”频率。本文根据热力学,流体动力学理论,推导出辅助体积的空气弹簧系统的振动微分方程。通过使用数值溶液方法获得空气弹簧的变形负荷静态特性曲线。然后,基于空气弹簧和减震器的座椅和参数的结构构建了重型卡车驾驶员座椅悬架系统的ADAMS模型。最后,考虑座椅加速度PSD和RMS值,通过比较模拟结果和测试结果来验证该模型。

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