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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Transmission of fore-and-aft vibration to the seat pan, the backrest and the headrest of a car seat
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Transmission of fore-and-aft vibration to the seat pan, the backrest and the headrest of a car seat

机译:前后振动传递到汽车座椅的座板,靠背和头枕

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摘要

Measurements of the transmission of vibration from the floor beneath a seat to interfaces between the seat and the human body are used to characterise the dynamic performance of the seat. Most studies of seat transmissibility concern the transmission of vertical vibration through seat pan cushions, but fore-and-aft vibration at a seat pan and backrest can also cause discomfort. This study investigated the transmission of fore-and-aft vibration through a car seat to surfaces on the seat pan cushion, the backrest cushion and the headrest, and also to the seat frame at these three locations. The study sought to understand the influences of the seat frame and the cushion foam and to provide data for dynamic modelling of the seat. The fore-and-aft transmissibility of the seat was measured with 12 human subjects and an SAE J826 manikin, using 120-s periods of fore-and-aft random vibration (0.25-40 Hz) at three magnitudes (0.4 m/s(2) r.m.s., 0.8 m/s(2) r.m.s. and 1.2 m/s(2) r.m.s.). With the manikin, there were three resonances (at 3.5 Hz, 12 Hz and 20 Hz) in the transmissibilities from the seat base to the seat pan frame and the seat pan cushion, and to the backrest frame and the backrest cushion. With the human subjects, the transmissibilities from the seat base to all six locations on the seat showed a principal resonance around 4 Hz. With increasing magnitude of the vibration, the principal resonance frequency in all the seat transmissibilities decreased. It is concluded that fore-and-aft resonances in the seat transmissibilities, especially to the backrest, are likely to affect vibration discomfort. There are large differences between the fore-and-aft transmissibility of a seat with a manikin and those with human subjects, consistent with the human body having dynamics very different from those of a rigid mass. Non-linearities in the seat transmissibilities with the manikin and with the human subjects may be explained by non-linearity in the biodynamics of the body and the responses of the seat and the manikin.
机译:从座椅下面的地板到座椅与人体之间的界面的振动传递的测量值用于表征座椅的动态性能。关于座椅可传递性的大多数研究都涉及垂直振动通过座椅底板垫的传递,但是座椅底板和靠背的前后振动也会引起不适感。这项研究调查了前后振动通过汽车座椅到座椅底板垫,靠背垫和头枕的表面以及在这三个位置的座椅框架的传递。该研究试图了解座椅框架和坐垫泡沫的影响,并为座椅的动态建模提供数据。使用12个人体受试者和一个SAE J826人体模型测量了座椅的前后可传递性,使用了三个时间段(0.4 m / s(0.4m / s( 2)rms,0.8 m / s(2)rms和1.2 m / s(2)rms)。使用人体模型时,从座椅底座到座板框架和座板垫,再到靠背框架和靠背垫的透射率发生三个共振(3.5 Hz,12 Hz和20 Hz)。对于人类受试者,从座椅底座到座椅上所有六个位置的透射率显示出4 Hz左右的主共振。随着振动幅度的增加,所有座椅透射率的主共振频率均降低。结论是,座椅透过性的前后共振,特别是靠背的共振,很可能会影响振动不适。带人体模型的座椅与带有人体模型的座椅的前后可传递性之间存在很大差异,这与人体的动力学特性与刚性物体的动力学特性完全不同是一致的。人体模型与人类对象之间的座椅透过率的非线性可以通过人体生物力学的非线性以及座椅和人体模型的响应来解释。

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