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Effects of posture and vibration magnitude on seat to head transmissibility during exposure to fore-and-aft vibration

机译:姿势和振动幅度在暴露于前后振动期间座椅坐姿的影响

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摘要

An experimental study has been conducted on the vibration simulator, developed as a mockup of a railway vehicle. In this paper, the effect of variations in the posture and vibration magnitude on head motions in three translational directions (fore-and-aft, lateral and vertical) are studied with seat vibration in fore-and-aft direction. Thirty healthy male subjects are exposed to random vibration with three vibration magnitudes of 0.4, 0.8 and 1.2 m/s~2 r.m.s. over the frequency range 1-20 Hz. The data results are analyzed in terms of seat-to-head transmissibility (STHT) in two sitting postures; backrest and forward lean. Vibration measurements of the head motions are made with an apparatus (bite-bar). The study confirms that the measured responses to single fore-and-aft axis vibration have shown notable cross-axis responses. An increase in the excitation magnitude consistently revealed a decrease in the response peak magnitude and the corresponding resonant frequency, particularly in the presence of a back support. Such non-linear behavior has been interpreted as a non-linear softening effect in the muscle tension under increasing intensity of vibration. The use of a back support significantly alters the biodynamic responses of the seated body, which is attributable to the constraint due to the backrest support.
机译:在振动模拟器上进行了实验研究,作为铁路车辆的样机开发。在本文中,在前后方向上用座椅振动研究了三个平移方向上的姿势和振动幅度对头部运动的效果和振动幅度的影响。 30个健康的男性受试者暴露于随机振动,三个振动幅度为0.4,0.8和1.2m / s〜2℃。超过频率范围1-20 Hz。在两个坐姿的座椅到头传播性(STHT)方面分析了数据结果;靠背和前锋倾斜。头部运动的振动测量由装置(咬合杆)制成。该研究证实,测量的单轴前轴振动的响应显示出显着的横轴响应。激发幅度的增加一致地揭示了响应峰值幅度和相应的谐振频率的降低,特别是在背部支撑的情况下。这种非线性行为被解释为在增加振动强度下的肌肉张力中的非线性柔软效果。背部支撑的使用显着改变了坐着的体的生物动力学响应,其由于靠背支撑而归因于约束。

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