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Effect of Different Seat Pan Angles and Feet-Floor Interactions on Human Body Response Using a Biodynamic Model

机译:不同座对平移角度和脚板相互作用对人体反应的使用生物动力学模型

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In recent years, study on the ride comfort of vehicles has attracted wide attention. The vibration caused by the road is transmitted to the human body through the tire, suspension, vehicle body, and the seat. Since the human body is in contact with the seat and the vibration is transmitted directly to the human body through the seat, the seat pan angle plays an important role on the vibration response of the human body. Previous studies have explored the effects of different backrest designs on human vibration response, but ignored the effects of different seat pan angles. Therefore, this paper will use a human biodynamic model combined with a 6-DOF seat model to study the effect of seat pan angles and feet-floor interaction on human vibration response. Three cases are proposed: Case 1 has a seat pan angle 8°, Case 2 has a seat pan angle 13°, and Case 3 has a seat pan angle 17°. In addition, the interface between the biodynamic model and vehicle floor has two ways of connection: rigid connection and soft connection.
机译:近年来,研究车辆的乘坐舒适感吸引着广泛的关注。由道路引起的振动通过轮胎,悬架,车身和座椅传递到人体。由于人体与座椅接触并且振动通过座椅直接传递到人体,因此座椅平移角度在人体的振动响应上起重要作用。以前的研究已经探索了不同靠背设计对人类振动响应的影响,但忽略了不同座椅平底锅角度的影响。因此,本文将使用人类生物动力学模型与6-DOF座椅模型相结合,研究座椅平底锅角度和脚地面相互作用对人振动响应的影响。提出了三种情况:壳体1具有座椅平移角8°,壳体2具有座椅平底锅角度13°,壳体3具有座椅平底锅角17°。此外,生物动力模型和车辆地板之间的界面具有两种连接方式:刚性连接和软连接。

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