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Study of occupant-seat models for vibration comfort analysis of automotive seats

机译:汽车座椅振动舒适分析乘员座椅模型研究

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The comfort assessments of automotive seats are attempted through development of seat-occupant models in order to minimize the participation of human subjects in such studies. A nonlinear model of a polyurethane foam (PUF) cushion and its support mechanism is developed through measurement of static and dynamic properties as functions of the seated load, and excitation frequencies and amplitudes. Nonlinear analytical models of the seat-occupant system are developed by integrating three different occupant models of different complexities with the cushion model. The analytical response characteristics of these models are derived under sinusoidal and random excitations considered representative of the automotive vibration environment. The vibration transmission properties of the seat are measured in the laboratory under harmonic and random excitations using 6 human subjects. The response characteristics of the models are compared with the mean measured response characteristics to examine the validity of occupant models for automotive applications. From the comparison, it is concluded that the reported occupant models yield poor estimates of vibration transmission performance of automotive seats.
机译:通过开发座位乘员模型来企图对汽车座椅的舒适评估,以尽量减少人类受试者在此类研究中的参与。聚氨酯泡沫(PUF)垫的非线性模型及其支撑机构是通过测量静态和动态特性作为坐式负载的函数和激发频率和振幅的作用。座椅乘员系统的非线性分析模型是通过将三种不同的乘员模型与垫模型集成而开发。这些模型的分析响应特征是在代表汽车振动环境的正弦和随机激励下衍生的。座椅的振动传动特性在实验室下测量使用6人受试者的谐波和随机激发。将模型的响应特性与平均测量的响应特性进行比较,以检查汽车应用程序乘员模型的有效性。从比较来看,据报道的乘员模型总结了汽车座椅的振动传输性能差的估计。

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