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通过生物力学模型模拟站立操作者对振动应力的响应。

Simulating the response of a standing operator to vibration stress by means of a biomechanical model.

作者信息

Fritz M

机构信息

Institut für Arbeitsphysiologie an der Universität Dortmund, Ardeystrasse 67, 44139, Dortmund, Germany.

出版信息

J Biomech. 2000 Jul;33(7):795-802. doi: 10.1016/s0021-9290(00)00038-5.

Abstract

Under vibration stress the compressive forces transmitted in the joints of a standing operator are composed of nearly static and oscillating force parts. Because these forces can hardly be measured they were assessed by means of a biomechanical model. In the model, 27 rigid bodies with 103 degrees of freedom represent the segments of the human body. 106 force elements imitate the muscles of the trunk and the legs. At first, the model parameter were varied so that for the simulated sitting posture the model fits the seat-to-head transmissibility given in the literature and in ISO/CD 5982. For the standing posture, the transfer functions between the ground acceleration and the oscillating forces in the ankle, the knee, the hip, and the motion segment L3-L4 were computed. According to the moduli of these functions the forces in the ankles are higher than those in the knees or the hips and they nearly come up to the forces in the lumbar spine. Further the results of the simulation indicate that under equal vibration stress in the standing and the sitting posture the differences between the compressive forces in the lumbar spine are small.

摘要

在振动应力作用下,站立作业人员关节处传递的压力由近似静态和振荡力部分组成。由于这些力难以测量,因此通过生物力学模型进行评估。在该模型中,具有103个自由度的27个刚体代表人体各部分。106个力元模拟躯干和腿部的肌肉。首先,改变模型参数,使模拟坐姿的模型符合文献及ISO/CD 5982中给出的座椅到头部的传递率。对于站立姿势,计算了地面加速度与脚踝、膝盖、髋部以及运动节段L3 - L4处振荡力之间的传递函数。根据这些函数的模量,脚踝处的力高于膝盖或髋部处的力,且几乎与腰椎处的力相当。此外,模拟结果表明,在站立和坐姿下相同振动应力作用下,腰椎处压力的差异较小。

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