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坐姿人体对单轴和双轴振动的动力响应:椅背和非线性的影响。

Biodynamic response of the seated human body to single-axis and dual-axis vibration: effect of backrest and non-linearity.

机构信息

Human Factors Research Unit, Institute of Sound and Vibration Research, University of Southampton, Southampton SO17 1BJ, United Kingdom.

出版信息

Ind Health. 2012;50(1):37-51. doi: 10.2486/indhealth.ms1298. Epub 2011 Dec 6.

Abstract

The biodynamic responses to the human body give an understanding of why human responses to vibration (changes in health, comfort, and performance) vary with the frequency and direction of vibration. Studies have shown that biodynamic responses also vary with the magnitude of vibration and that the backrests of seats influence the transmission of vibration to the seated human body. There has been little study of the nonlinearity in the biodynamic responses of the body to dual-axis excitation and no study of the influence of backrests during dual-axis excitation. This study investigated the apparent mass and cross-axis apparent mass of the human body exposed to random vibration (0.2 to 20 Hz) in all 15 possible combinations of four magnitudes (0, 0.25, 0.5 and 1.0 ms(-2) r.m.s.) of fore-and-aft vibration and the same four magnitudes of vertical vibration. Nonlinearity was evident, with the body softening with increasing magnitude of vibration when using a fixed magnitude of vibration in one direction and varying the magnitude of vibration in the other direction. The fore-and-aft apparent mass on the seat was greater without a backrest at the lower frequencies but greater with a backrest at the higher frequencies. The vertical apparent mass on the seat was decreased by the backrest at low frequencies. Cross-axis coupling was evident, with excitation in one axis producing a response in the other axis. It is concluded that the nonlinearity of the body evident during single-axis and multi-axis vibration, and the influence of backrests, should be taken into account when determining frequency weightings for predicting human responses to vibration and when optimising the dynamics of seating to minimise exposure to vibration.

摘要

人体的动力反应使人们了解为什么人体对振动的反应(健康、舒适和性能的变化)会随振动的频率和方向而变化。研究表明,动力反应也随振动的幅度而变化,而且座椅的靠背会影响振动传递到坐姿人体。对于双轴激励下的人体动力反应的非线性以及双轴激励期间靠背的影响,研究甚少。本研究调查了在所有 15 种可能的前后振动(0.2 至 20 Hz)和相同的四个垂向振动幅度(0、0.25、0.5 和 1.0 ms(-2) r.m.s.)的组合中,人体暴露于随机振动(0.2 至 20 Hz)时的表观质量和交叉轴表观质量。当在一个方向上使用固定的振动幅度而在另一个方向上改变振动幅度时,明显存在非线性,随着振动幅度的增加,身体会变软。在较低频率下,没有靠背时座椅上的前后向表观质量较大,但在较高频率下,靠背时的表观质量较大。靠背在低频时降低了座椅上的垂直表观质量。交叉轴耦合明显,一个轴的激励会在另一个轴产生响应。结论是,在单轴和多轴振动过程中,身体的非线性以及靠背的影响,在确定预测人体对振动的反应的频率加权以及优化座椅的动力学以最小化振动暴露时,应予以考虑。

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