Liu Chi, Qiu Yi, Griffin Michael J
Institute of Sound and Vibration Research, University of Southampton, Southampton SO17 1BJ, United Kingdom.
Institute of Sound and Vibration Research, University of Southampton, Southampton SO17 1BJ, United Kingdom.
J Biomech. 2017 Aug 16;61:176-182. doi: 10.1016/j.jbiomech.2017.07.015. Epub 2017 Jul 25.
Biodynamic responses of the seated human body are usually measured and modelled assuming a single point of vibration excitation. With vertical vibration excitation, this study investigated how forces are distributed over the body-seat interface. Vertical and fore-and-aft forces were measured beneath the ischial tuberosities, middle thighs, and front thighs of 14 subjects sitting on a rigid flat seat in three postures with different thigh contact while exposed to random vertical vibration at three magnitudes. Measures of apparent mass were calculated from transfer functions between the vertical acceleration of the seat and the vertical or fore-and-aft forces measured at the three locations, and the sum of these forces. When sitting normally or sitting with a high footrest, vertical forces at the ischial tuberosities dominated the vertical apparent mass. With feet unsupported to give increased thigh contact, vertical forces at the front thighs were dominant around 8Hz. Around 3-7Hz, fore-and-aft forces at the middle thighs dominated the fore-and-aft cross-axis apparent mass. Around 8-10Hz, fore-and-aft forces were dominant at the ischial tuberosities with feet supported but at the front thighs with feet unsupported. All apparent masses were nonlinear: as the vibration magnitude increased the resonance frequencies decreased. With feet unsupported, the nonlinearity in the apparent mass was greater at the front thighs than at the ischial tuberosities. It is concluded that when the thighs are supported on a seat it is not appropriate to assume the body has a single point of vibration excitation.
就座人体的生物动力学响应通常是在假设单一振动激励点的情况下进行测量和建模的。通过垂直振动激励,本研究调查了力是如何分布在身体与座椅界面上的。在14名受试者坐在刚性平板座椅上的三种姿势下,在不同大腿接触情况时,测量了坐骨结节、大腿中部和大腿前部下方的垂直力和前后力,同时使他们暴露于三种强度的随机垂直振动中。根据座椅垂直加速度与在三个位置测量的垂直力或前后力之间的传递函数以及这些力的总和来计算表观质量。正常就座或使用高脚凳就座时,坐骨结节处的垂直力主导垂直表观质量。当双脚无支撑以增加大腿接触时,大腿前部的垂直力在8Hz左右占主导。在3 - 7Hz左右,大腿中部的前后力主导前后交叉轴表观质量。在8 - 10Hz左右,双脚支撑时坐骨结节处的前后力占主导,而双脚无支撑时大腿前部的前后力占主导。所有表观质量都是非线性的:随着振动强度增加,共振频率降低。双脚无支撑时,大腿前部表观质量的非线性比坐骨结节处更大。得出的结论是,当大腿支撑在座椅上时,假设身体有单一振动激励点是不合适的。