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Deflection, Acceleration, and Force Corridors for Small Females in Side Impacts

机译:小型女性侧撞时的挠度,加速度和力通道

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Objective. This study was undertaken to develop biomechanical corridors applicable to the small-sized female in side impacts. Methods. Sled tests were conducted using post mortem human subjects at a velocity of 6.7 m/s. Three chestbands were used to compute deflection-time histories at the axilla, xyphoid process, and tenth rib levels. Triaxial accelerometers were fixed to the upper and lower spine and sacrum to record acceleration-time histories. Specimens contacted the load wall with varying initial conditions (rigid and padded; flat wall and offset) from which impact forces to the thoracic, abdominal, and pelvic regions were obtained using load cell data. Adopting signal processing and mass-based scaling methods, corridors were derived for forces, accelerations, and chest deflections at three levels for all initial conditions. Results. All time history corridors were expressed as mean plus/minus one standard deviation and provided in the article. Conclusions. Acceleration-, deflection-, and force-time corridors obtained for the chest and pelvic regions of the human body will assist in the assessment of anthropomorphic test devices used in crashworthiness evaluations.
机译:目的。进行这项研究是为了开发适用于小型女性侧面撞击的生物力学走廊。方法。使用验尸后的人类受试者以6.7 m / s的速度进行雪橇测试。使用三个胸带来计算腋窝,剑突和第十肋骨水平的挠曲时间历史。三轴加速度计固定在上下脊柱和ac骨上,以记录加速时间历史。样品以不同的初始条件(刚性和软垫;平坦的壁​​和偏置)接触载荷壁,并使用载荷传感器数据从中获得对胸,腹和骨盆区域的冲击力。通过采用信号处理和基于质量的缩放方法,得出了在所有初始条件下三个级别的力,加速度和胸部挠度的走廊。结果。本文中提供了所有时间历史记录走廊,以均值加/减去一个标准差表示。结论。为人体的胸部和骨盆区域获得的加速,偏转和力时通道将有助于评估用于耐撞性评估的拟人化测试设备。

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