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首页> 外文期刊>Journal of Biomechanics >Measurement and modelling of x-direction apparent mass of the seated human body-cushioned seat system.
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Measurement and modelling of x-direction apparent mass of the seated human body-cushioned seat system.

机译:坐式人体缓冲座椅系统的x方向视在质量的测量和建模。

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For modelling purposes and for evaluation of driver's seat performance in the vertical direction various mechano-mathematical models of the seated human body have been developed and standardized by the ISO. No such models exist hitherto for human body sitting in an upright position in a cushioned seat upper part, used in industrial environment, where the fore-and-aft vibrations play an important role. The interaction with the steering wheel has to be taken into consideration, as well as, the position of the human body upper torso with respect to the cushioned seat back as observed in real driving conditions. This complex problem has to be simplified first to arrive at manageable simpler models, which still reflect the main problem features. In a laboratory study accelerations and forces in x-direction were measured at the seat base during whole-body vibration in the fore-and-aft direction (random signal in the frequency range between 0.3 and 30 Hz, vibration magnitudes 0.28, 0.96, and 2.03 ms(-2) unweighted rms). Thirteen male subjects with body masses between 62.2 and 103.6 kg were chosen for the tests. They sat on a cushioned driver seat with hands on a support and backrest contact in the lumbar region only. Based on these laboratory measurements a linear model of the system-seated human body and cushioned seat in the fore-and-aft direction has been developed. The model accounts for the reaction from the steering wheel. Model parameters have been identified for each subject-measured apparent mass values (modulus and phase). The developed model structure and the averaged parameters can be used for further bio-dynamical research in this field.
机译:为了建模和评估驾驶员座椅在垂直方向上的性能,ISO已开发并标准化了各种坐姿人体力学力学模型。迄今为止,还没有这样的模型可以将人体垂直放置在带有坐垫的靠垫上部中,用于工业环境中,前后振动起着重要的作用。必须考虑与方向盘的相互作用,以及在实际驾驶条件下观察到的人体上躯干相对于带软垫的靠背的位置。必须首先简化此复杂问题,以得到可管理的更简单模型,该模型仍反映出主要问题的特征。在实验室研究中,沿前后方向进行全身振动时,在座椅底座上测量了x方向的加速度和力(频率范围在0.3到30 Hz之间的随机信号,振动幅度为0.28、0.96和2.03 ms(-2)未加权均方根)。测试选择了13名体重在62.2至103.6 kg之间的男性受试者。他们坐在靠垫的驾驶员座椅上,双手放在腰部区域的支撑和靠背触点上。基于这些实验室测量,已开发了系统安装的人体和坐垫在前后方向上的线性模型。该模型说明了方向盘的反应。已经为每个受试者测量的表观质量值(模量和相位)确定了模型参数。所开发的模型结构和平均参数可用于该领域的进一步生物动力学研究。

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