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Various vehicle speeds and road profiles effects on transmitted accelerations analysis to human body segments using vehicle and biomechanical models

机译:使用车辆和生物力学模型,各种车辆速度和道路轮廓对传递到人体段的加速度分析的影响

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In this paper, a biomechanical model of human body is proposed to evaluate the biodynamic responses to vertical vibration and transmitted accelerations for the seated position without backrest support. Hence, a 6-DoF lumped-parameter model with six concentrated masses, which are connected using several linear springs and dampers, is presented here. Moreover, the full vehicle model is developed in ADAMS/CAR in order to utilize the acceleration of seat under various roads excitation for different amount of vehicle speeds. The transmitted accelerations to the human body segments are evaluated based on applied accelerations under the automotive passenger’s seat due to, two various road profiles with two driving cycles. The road profiles consisted of polyline and roughness profiles. Finally, the obtained results illustrated the maximum value of transmitted accelerations for different body segments occurred in frequencies below 5?Hz, it can be concluded that the human body is more sensitive to vibration with frequencies under 5?Hz.
机译:在本文中,提出了一种人体生物力学模型,以评估在没有靠背支撑的情况下对于就座位置的垂直振动和传递的加速度的生物动力响应。因此,这里介绍了一个具有六个集中质量的6自由度集总参数模型,这些模型使用几个线性弹簧和阻尼器连接。此外,在ADAMS / CAR中开发了完整的车辆模型,以利用各种道路激励下的座椅加速度来实现不同的车速。传递给人体各部分的加速度是根据汽车乘客座椅下由于两个行驶周期的两种不同的路面状况而施加的加速度进行评估的。道路轮廓由折线和粗糙度轮廓组成。最后,获得的结果说明了在低于5?Hz的频率下发生的不同身体段的传递加速度的最大值,可以得出结论,人体对低于5?Hz的频率的振动更加敏感。

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