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Discomfort of seated persons exposed to low frequency lateral and roll oscillation: Effect of seat cushion

机译:暴露于低频横向和侧倾振动的就座者的不适感:座垫的影响

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摘要

The discomfort caused by lateral oscillation, roll oscillation, and fully roll-compensated lateral oscillation has been investigated at frequencies between 0.25 and 1.0 Hz when sitting on a rigid seat and when sitting on a compliant cushion, both without a backrest. Judgements of vibration discomfort and the transmission of lateral and roll oscillation through the seat cushion were obtained with 20 subjects. Relative to the rigid seat, the cushion increased lateral acceleration and roll oscillation at the lower frequencies and also increased discomfort during lateral oscillation (at frequencies less than 0.63 Hz), roll oscillation (at frequencies less than 0.4 Hz), and fully roll-compensated lateral oscillation (at frequencies between 0.315 and 0.5 Hz). The root-sums-of-squares of the frequency-weighted lateral and roll acceleration at the seat surface predicted the greater vibration discomfort when sitting on the cushion. The frequency-dependence of the predicted discomfort may be improved by adjusting the frequency weighting for roll acceleration at frequencies between 0.25 and 1.0 Hz.
机译:当坐在刚性座椅上和坐在柔软的靠垫上且没有靠背时,已经研究了由侧向振动,侧倾振动和完全侧倾补偿的侧向振动引起的不适感,频率介于0.25和1.0 Hz之间。对20位受试者进行了振动不适感以及横向和侧倾振动通过座垫的传递的判断。相对于刚性座椅,座垫在较低频率下增加了侧向加速度和侧倾振动,并且在侧向振动(频率小于0.63 Hz),侧倾振动(频率小于0.4 Hz)和完全侧倾补偿期间增加了不适感横向振荡(频率在0.315和0.5 Hz之间)。当坐在坐垫上时,频率加权侧向和侧倾加速度的平方和的平方根预示着更大的振动不适感。可以通过在0.25和1.0 Hz之间的频率调整侧倾加速度的频率加权来改善预计不适的频率依赖性。

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