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Effect of seat surface angle on forces at the seat surface during whole-body vertical vibration

机译:全身垂直振动过程中座面角度对座面力的影响

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Twelve male subjects have been exposed to whole-body vertical random vibration so as to investigate the effect of seat surface angle, vibration magnitude and contact with a backrest on the 'vertical apparent mass' (calculated from forces normal to the seat surface and vertical acceleration) and 'fore-and-aft cross-axis apparent mass' (calculated from forces parallel to the seat surface and vertical acceleration). At each of four seat surface angles (0 degrees, 5 degrees, 10 degrees, and 15 degrees), the subjects were exposed to four vibration magnitudes (0.125, 0.25, 0.625, and 1.25 ms(-2) rms) in the frequency range 0.25-15 Hz.The 'vertical apparent mass' and 'fore-and-aft cross-axis apparent mass' on the seat surface suggested resonances in the vicinity of 5 and 4 Hz, respectively. At all seat angles, both with and without a backrest, the resonance frequency in the 'vertical apparent mass' was greater than the resonance frequency in the 'fore-and-aft cross-axis apparent mass'. Within subjects, the two resonance frequencies were not correlated in any condition. Seat angles up to 15 degrees had a negligible effect on the 'vertical apparent mass' but a considerable effect on the 'fore-and-aft cross-axis apparent mass' on the seat surface, where 'cross-axis apparent mass' increased with increasing seat angle. At all seat angles, increasing the vibration magnitude decreased the resonance frequency in both directions. The least significant decrease in resonance frequency with increasing vibration magnitude occurred in the 'fore-and-aft cross-axis apparent mass' at the maximum seat angle of 15 degrees. At low frequencies, the backrest reduced the forces in both directions, with the reduction greatest in the 'fore-and-aft' direction. The 'fore-and-aft cross-axis apparent mass' at resonance was correlated with subject mass and subject stature. (c) 2004 Elsevier Ltd. All rights reserved.
机译:12位男性受试者已受到全身垂直随机振动的影响,以研究座椅表面角度,振动幅度以及与靠背的接触对“垂直表观质量”的影响(由垂直于座椅表面的力和垂直加速度计算) )和“前后横轴视在质量”(由平行于座椅表面的力和垂直加速度计算得出)。在四个座椅表面角度(0度,5度,10度和15度)中的每个角度下,受试者都在频率范围内暴露于四个振动幅度(0.125、0.25、0.625和1.25 ms(-2)rms) 0.25-15 Hz。座椅表面的``垂直视在质量''和``前后横轴视在质量''表明共振分别在5 Hz和4 Hz附近。在有和没有靠背的所有座椅角度下,“垂直视在质量”中的共振频率都大于“前后横轴视在质量”中的共振频率。在受试者内,两个共振频率在任何情况下均不相关。座椅角度最大为15度时,对“垂直表观质量”的影响可以忽略不计,但对座椅表面的“前后横轴表观质量”的影响却很小,其中“横轴表观质量”随着增加座椅角度。在所有座椅角度下,增加振动幅度都会降低两个方向上的共振频率。共振频率随振动幅度的增加而出现的最小幅度降低出现在最大前后角度为15度的“前后横轴视在质量”中。在低频时,靠背在两个方向上均减小了力,而在“前后”方向上的减小最大。共振时的“前后横轴表观质量”与受试者的体重和受试者的身材相关。 (c)2004 Elsevier Ltd.保留所有权利。

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