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首页> 外文期刊>International Journal of Industrial Ergonomics >Distribution of human-seat interface pressure on a soft automotive seat under vertical vibration
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Distribution of human-seat interface pressure on a soft automotive seat under vertical vibration

机译:垂直振动下软质汽车座椅上人机界面的压力分布

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摘要

Distribution of contact pressure and forces between the seated human subjects and a visco-elastic seat is experimentally investigated under vertical vibration. The dynamic pressure on the elastic seat is measured under sinusoidal verticalvibration of different magnitudes in the 1-10 Hz frequency range, using a flexible grid of pressure sensors. The human-seat interface pressure data acquired with a total of six subjects is analyzed to illustrate the influence of magnitude and frequency of vibration excitations on the maximum ischium pressure, effective contact area and contact force distribution. The results are discussed to illustrate the influence of seated posture and the subject build on the contact force and area. Alternately, thecontour maps of static pressure distribution, and time histories of the ischium pressure and the effective contact area measured under vibration are compared with those determined while using a rigid seat. The results show that the maximum variations inthe ischium pressure and the effective contact area on a soft seat occur near the resonant frequency of the coupled human-seat system (2.5-3.0 Hz). The maximum ischium pressure and effective contact area on a soft seat tend to increase considerably withincrease in the magnitude of vibration excitation.
机译:在垂直振动下,通过实验研究了就座的人类受试者和粘弹性座椅之间的接触压力和力的分布。使用压力传感器的柔性网格,在1-10 Hz频率范围内不同幅度的正弦垂直振动下,测量弹性座上的动压力。分析了总共获取了六个对象的人座界面压力数据,以说明振动激发的幅度和频率对最大坐骨压力,有效接触面积和接触力分布的影响。讨论结果以说明就座姿势和对象体形对接触力和面积的影响。或者,将静压分布的等高线图,坐骨压力的时间历程和在振动下测量的有效接触面积与使用刚性座椅时确定的轮廓图进行比较。结果表明,坐骨压力的最大变化和软座上的有效接触面积出现在耦合的人座系统的共振频率(2.5-3.0 Hz)附近。坐垫上的最大坐骨压力和有效接触面积往往会在激发振动的幅度内显着增加。

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