首页> 外文会议>SMASIS2010;ASME conference on smart materials, adaptive structures and intelligent systems >MITIGATION OF BIODYNAMIC RESPONSE TO SHOCK LOADS USING SEMI-ACTIVE VERTICALLY STROKING CREW SEATS
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MITIGATION OF BIODYNAMIC RESPONSE TO SHOCK LOADS USING SEMI-ACTIVE VERTICALLY STROKING CREW SEATS

机译:使用半主动垂直行程的乘员座椅缓解对冲击载荷的生物动力响应

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This study addresses mitigation of biodynamic response due to an initial velocity impact of a vertically stroking crew seat using an adaptive magnetorheological energy absorber. Under consideration is a multiple degree-of-freedom detailed lumped parameter model of a human body falling with prescribed initial crash velocity (sink rate). The lumped parameter model of the human body consisted of four main parts: pelvis, upper torso, viscera and head. The governing equations of motion of a vertically stroking crew seat incorporating a human body were derived using parameters such as available damper stroke as well as MR yield force. The control algorithm for smooth landing of a rigid occupant was examined for compliant occupant and was modified accordingly. Four MR yield force models were analyzed to shape decelerations experienced by human body and an appropriate model was selected for comprehensive analysis. The simulated responses were analyzed with selected MR yield force model for a crew seat with an occupant corresponding to 90~th percentile male at sink rates varying from 8 to 12 m/s. In addition, the mitigation of injuries to the human body parts due to load transmissions corresponding to crash velocities was also evaluated for the selected MR yield force model along with terminal conditions necessary for smooth landing.
机译:这项研究旨在解决由于使用自适应磁流变能量吸收器而对垂直抚摸的船员座椅施加初始速度造成的初始速度影响而造成的生物动力响应的减轻。考虑中的是人体以规定的初始碰撞速度(下沉速度)下降的多自由度详细集总参数模型。人体的集总参数模型由四个主要部分组成:骨盆,上躯干,内脏和头部。使用诸如可用的减震器行程以及MR屈服力之类的参数,得出了包含人体的垂直抚摸式乘员座椅的运动控制方程。检查了平稳乘员平稳着陆的控制算法,以适应乘员,并进行了相应的修改。分析了四个MR屈服力模型以塑造人体所经历的减速度,并选择了合适的模型进行综合分析。使用选定的MR屈服力模型对乘员座位对应于90%的男性乘员的沉没速率(从8到12 m / s不等)分析了模拟响应。此外,还针对选定的MR屈服力模型以及平稳着陆所必需的最终条件,评估了减轻因与碰撞速度相对应的载荷传递而对人体部位造成的伤害的缓解程度。

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