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Multibody Modeling of Direct and Cross-Axis Seat to Head Transmissibility of the Seated Human Body Supported with Backrest and Exposed to Vertical Vibrations

机译:用靠背和暴露于垂直振动的坐垫人体的直接和横轴座椅的多体模型。

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Drivers of the road and off-road vehicles are continuously exposed to low-frequency whole-body vibration of significant magnitudes arising from tire/track-terrain interactions. The human body models reported in the literature for analyzing these are usually of lumped parameter category having only a few degrees of freedom. Most of them are also one-dimensional models, i.e., they allow an analysis of vibration only in the vertical direction. The highly complex motion that the human body is subjected to in real life requires at least a two-dimensional model. This paper presents a multibody human body model of 12 degrees of freedom that represents a seated human with backrest support. The motion has been assumed to occur in only the sagittal plane allowing vibration analysis in two dimensions. The modeling of the interconnection of masses using rotational and translational springs and dampers and the contact with backrest gives a better simulation of forces transmitted to the upper and lower torso. A sensitivity study to find the effect of critical model parameters on the frequencies of peak moduli helps in identifying the section of the human body which should be given appropriate support for improving comfort. This can lead to the re-design of the seat by considering the effect on different sections of the human body. This is expected to be a better approach than the current practice of considering the overall effect on the human body.
机译:道路和越野车辆的司机连续暴露于轮胎/轨道地形相互作用引起的显着大小的低频全体振动。在文献中报道的人体模型,用于分析这些,通常是只有几种自由度的集成参数类。其中大多数也是一维模型,即,它们仅允许在垂直方向上分析振动。人体在现实生活中受到高度复杂的动作需要至少是二维模型。本文介绍了12个自由度的多体人体模型,代表了靠背支持的坐着的人。已经假设运动仅在矢状平面中发生,允许两个维度的振动分析。使用旋转和平移弹簧和阻尼器互连的互连和与靠背的接触提供了更好地模拟传递到上躯干和下躯干的力。一种灵敏度研究,以找到临界模型参数对峰模频率的影响有助于识别人体的截面,这应该得到适当的支持改善舒适性。这可以通过考虑对人体不同部分的影响来导致座椅的重新设计。这预计比目前考虑人体整体影响的实践是更好的方法。

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