Paddan G S, Griffin M J
Institute of Sound and Vibration Research, The University, Southampton, U.K.
J Biomech. 1988;21(3):199-206. doi: 10.1016/0021-9290(88)90170-4.
The second part of this study of the six axes of head motion caused by translational seat vibration is concerned with the effect of fore-and-aft (x-axis) and lateral (y-axis) seat vibration. Seat-to-head transmissibilities have been determined at frequencies up to 16 Hz for each of the three translational and three rotational axes of the head during exposure to random vibration of the seat. Repeatability measures within a single subject and studies of the variability across a group of twelve subjects have been conducted with two seating conditions: a rigid seat with a backrest, and the same seat with no backrest. Fore-and-aft seat motion mainly resulted in head motion within the mid-sagittal plane (x-z plane). Without the backrest, transmissibilities for the fore-and-aft, vertical and pitch axes of the head were greatest at about 2 Hz. The backrest greatly increased head vibration at frequencies above 4 Hz and caused a second peak in the transmissibility curves at about 6 to 8 Hz. Lateral seat motion mainly caused lateral head motion with a maximum transmissibility at about 2 Hz. The backrest had little effect on the transmission of lateral vibration to the head. For both axes of excitation inter-subject variability was much greater than intra-subject variability.
本研究关于平移座椅振动引起的头部运动六个轴的第二部分,关注的是前后(x轴)和横向(y轴)座椅振动的影响。在座椅随机振动过程中,已针对头部的三个平移轴和三个旋转轴,在高达16Hz的频率下确定了座椅到头部的传递率。在两种座椅条件下进行了单受试者内的重复性测量以及对一组12名受试者变异性的研究:一种是带有靠背的刚性座椅,另一种是没有靠背的相同座椅。前后座椅运动主要导致头部在矢状中平面(x-z平面)内运动。没有靠背时,头部前后、垂直和俯仰轴的传递率在约2Hz时最大。靠背在4Hz以上的频率极大地增加了头部振动,并在约6至8Hz处导致传递率曲线出现第二个峰值。横向座椅运动主要导致头部横向运动,最大传递率在约2Hz时出现。靠背对横向振动向头部的传递影响很小。对于两个激励轴,受试者间的变异性远大于受试者内的变异性。