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Response Comparisons of the Human Cadaver Knee and a Part 572 Dummy Knee to Impacts by Crushable Materials

机译:人体尸体膝关节的响应比较和572个假膝关节撞击抵碎材料的影响

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Knees of 13 unembalmed human cadavers and a Part 572 dummy were impacted with a pendulum having either 203 mm square aluminum honeycomb or Styrofoam DB striking surface. Impacts were made along the femoral axis of rigidly mounted legs with a 52.3 kg pendulum at velocities of 1.8 and 3.6 m/s. Forces transmitted through the femur and tibia (at the ankle) were measured to determine the force response distribution. Pendulum acceleration parallel to the femoral axis was measured for all tests. Knee penetrations into the striking surface material were obtained by double integration of the pendulum acceleration-time traces, were verified by analysis of high speed movies, and were com pared with the projected contact areas as penetration increased. Impact responses are presented as cross plots of force versus depth of knee penetration into the interface material. For aluminum honeycomb impacts at 3.6 m/s, the mean peak force resulting from cadaver impacts is lower than the mean peak force resulting from dummy knee impacts. However, for Styrofoam DB impacts at 3.6 m/s, the mean force-penetration response of the cadaver knees is similar to the response of the Part 572 dummy knee. Significant differences in peak force levels for the cadaver and dummy were not observed with either aluminum honeycomb or with Styrofoam DB at 1.8 m/s impact velocities.
机译:13个Unemaled人员尸体的膝盖和第572部分虚拟物受到具有203mm正方形铝蜂窝或聚苯乙烯泡沫状DB撞击表面的摆锤。沿着刚性安装腿的股骨轴施加的冲击,速度为1.8和3.6米/秒的52.3千克下摆。测量通过股骨和胫骨(在脚踝处)传递的力以确定力响应分布。针对所有测试测量平行于股骨轴的摆加速度。通过双重整合摆动时间迹线获得膝关节渗透,通过分析高速电影进行验证,并与投影接触区域进行了渗透,因为渗透率增加。施加反应作为膝关节渗透到界面材料的横向曲线。对于铝蜂窝状的影响为3.6 m / s,由尸体冲击产生的平均峰值低于虚拟膝关节撞击产生的平均峰值力。然而,对于3.6米/秒的聚苯乙烯泡沫塑料DB撞击,尸体膝盖的平均力渗透响应类似于部件572伪膝关节的响应。铝蜂窝状或用溶液DB的1.8米/升冲击速度,未观察到尸体峰值水平的显着差异。

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