首页> 外文期刊>Journal of Sound and Vibration >Comparison of the apparent masses and cross-axis apparent masses of seated humans exposed to single- and dual-axis whole-body vibration
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Comparison of the apparent masses and cross-axis apparent masses of seated humans exposed to single- and dual-axis whole-body vibration

机译:坐着的人在单轴和双轴全身振动下的表观质量和横轴表观质量的比较

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摘要

Humans are exposed to whole-body vibration in many types of environment. In almost all cases, the vibration to which the human is exposed comprises multi-axis vibration, such that vibration occurs in all directions simultaneously. Despite the complex nature of vibration to which humans are exposed in the workplace, almost all laboratory studies investigating the biomechanical response of the person have been completed using single-axis simulators. This paper presents a study whereby 15 male subjects were exposed to single-axis whole-body vibration in the x-, y- and z-directions and dual-axis vibration in the xy-, xz-, and yz-directions using a 6 degree-of-freedom vibration simulator. All vibration magnitudes were 0.4 ms(-2) rms in each axis. Acceleration and force was measured in the x-, y-, and z-direction during all trials. Subjects sat in two postures ('back-on' and 'back-off) on a flat rigid seat. Apparent masses measured using single-axis and dual-axis vibration stimuli showed comparable results; similarly, cross-axis apparent masses (i.e. the ratio of the force in one direction to the acceleration in another direction) were almost identical for the single- and dual-axis vibration stimuli. All results were in agreement with data previously published using single-axis vibration. In most cases, the peaks in the apparent mass and the cross-axis apparent mass occurred at a slightly lower frequency for the dual-axis vibration than for the single-axis vibration. It is hypothesised that this change is due to a nonlinear effect, analogous to that which occurs with increasing vibration magnitude for single-axis vibration. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在许多类型的环境中,人类都受到全身振动的影响。在几乎所有情况下,人所承受的振动包括多轴振动,使得振动同时在所有方向上发生。尽管人在工作场所会受到振动的复杂影响,但几乎所有研究人的生物力学响应的实验室研究都已使用单轴模拟器完成。本文介绍了一项研究,其中15位男性受试者分别使用x,y和z方向的单轴全身振动和xy,xz和yz方向的双轴振动进行暴露。自由度振动模拟器。每个轴上的所有振动幅度均为0.4 ms(-2)rms。在所有试验中,均在x,y和z方向上测量加速度和力。受试者以两种姿势(“靠背”和“靠背”)坐在平坦的刚性座椅上。使用单轴和双轴振动刺激测量的表观质量显示出可比的结果;类似地,对于单轴和双轴振动刺激,横轴视在质量(即,一个方向上的力与另一方向上的加速度之比)几乎相同。所有结果与先前使用单轴振动发布的数据一致。在大多数情况下,表观质量和横轴表观质量的峰值出现在双轴振动的频率略低于单轴振动的频率。假设这种变化是由于非线性效应引起的,类似于单轴振动随着振动幅度的增加而发生的。 (c)2006 Elsevier Ltd.保留所有权利。

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