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首页> 外文期刊>Journal of Sound and Vibration >Nonlinear dual-axis biodynamic response of the semi-supine human body during longitudinal horizontal whole-body vibration
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Nonlinear dual-axis biodynamic response of the semi-supine human body during longitudinal horizontal whole-body vibration

机译:水平仰卧全身振动过程中半仰卧人体的非线性双轴生物动力响应

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摘要

The resonance frequencies in frequency response functions of the human body (e.g. apparent mass and transmissibility) decrease with increasing vibration magnitude. This nonlinear biodynamic response is found with various sitting and standing postures requiring postural control. The present study measured the apparent mass of the body in a relaxed semi-supine posture with two types of longitudinal horizontal vibration (in the z-axis of the semi-supine body): (i) continuous random excitation (0.25-20 Hz) at five magnitudes (0. 125, 0.25, 0.5, 0.75 and 1.0 ms(-2) rms); (ii) intermittent random excitation (0.25-20 Hz) alternately at 0.25 and 1.0 ms(-2) rms. With continuous random vibration, the dominant primary resonance frequency in the median normalised apparent mass decreased from 3.7 to 2.4 Hz as the vibration magnitude increased from 0. 125 to 1.0 ms(-2) rms. A nonlinear response was apparent in both the horizontal (z-axis) apparent mass and the vertical (x-axis) cross-axis apparent mass. With intermittent random vibration, as the vibration magnitude increased from 0.25 to 1.0 ms(-2) rms, the median resonance frequency of the apparent mass decreased from 3.2 to 2.5 Hz whereas, with continuous random vibration over the same range of magnitudes, the resonance frequency decreased from 3.4 to 2.4 Hz. The median change in the resonance frequency (between 0.25 and 1.0 ms(-2) rms) was 0.6 Hz with the intermittent random vibration and 0.9 Hz with the continuous random vibration. With intermittent vibration, the resonance frequency was higher at the high magnitude and lower at the low magnitude than with continuous vibration at the same magnitudes. The responses were consistent with passive thixotropy being a primary cause of nonlinear biodynamic responses to whole-body vibration, although reflex activity of the muscles may also have an influence. (c) 2007 Elsevier Ltd. All rights reserved.
机译:人体的频率响应函数中的共振频率(例如表观质量和透射率)随着振动幅度的增加而降低。发现这种非线性生物动力响应具有需要姿势控制的各种坐姿和站立姿势。本研究通过两种纵向水平振动(在半仰卧体的z轴上)以松弛的半仰卧姿势测量了身体的表观质量:(i)连续随机激发(0.25-20 Hz)五个幅度(0.125、0.25、0.5、0.75和1.0 ms(-2)rms); (ii)以0.25和1.0 ms(-2)rms交替进行间歇性随机激励(0.25-20 Hz)。在连续随机振动的情况下,随着振动幅度从0. 125 rms增加到1.0 ms(-2)rms,中位归一化表观质量中的主要主共振频率从3.7降至2.4 Hz。在水平(z轴)表观质量和垂直(x轴)横轴表观质量中均表现出非线性响应。对于间歇性随机振动,随着振动幅度从0.25增至1.0 ms(-2)rms,表观质量的中值共振频率从3.2降低至2.5 Hz,而在相同幅度范围内进行连续随机振动时,共振频率从3.4降至2.4 Hz。共振频率的中值变化(在0.25和1.0 ms(-2)rms之间)在间歇性随机振动的情况下为0.6 Hz,在连续性随机振动的情况下为0.9 Hz。在间歇振动的情况下,与在相同振幅下的连续振动相比,在高振幅下共振频率更高而在低振幅下共振频率更低。响应与被动触变性是一致的,后者是对全身振动产生非线性生物动力响应的主要原因,尽管肌肉的反射活动也可能会产生影响。 (c)2007 Elsevier Ltd.保留所有权利。

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