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CHARACTERIZATION OF LEG INJURIES FROM MOTOR VEHICLE IMPACTS

机译:机动车辆撞击腿部伤害的特征

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The objective of this investigation was to understand relationships among loading characteristics as they affect the kinematics and injury of a pedestrian's lower extremity. Real-life pedestrian and motor vehicle collision scenarios were modeled by impacting 604 human cadaver intact legs and long bones with a cart/guide rail impacting system designed to simulate the front end of an automobile. A parametric study was conducted that varied the boundary conditions on the foot as well as test parameters such as loading direction, impact velocity, and impactor geometry. The series of tests can be categorized as follows: (1) Fracture Characterization, (2) Threshold Velocity, (3) Friction versus Inertial Constraint, (4) Anterior and Lateral Thigh Impacts, and (5) Embalmed vs. Unembalmed. Documented data for various specimens include, but are not limited to, specimen anthropometrics, fracture patterns, failure force levels, and calculated bending moments. Representative values include averages as follows: Failure forces for the tibia ranged from 1.19 to 7.07 kN. Failure forces for the femur ranged 1.31 to 8.37 kN. Bending moments averaged from approximately 100 to 500 Nm. These values varied depending on the speed of impact, impactor geometry, direction of impact, gender of specimen, etc. The results and observations may be helpful as an aid for evaluating the effectiveness of any protective or mitigative devices or strategies.
机译:这项调查的目的是了解加载特征之间的关系,因为它们影响行人的下肢的运动学和伤害。使用旨在模拟汽车前端的推车/导轨冲击系统,通过影响604人类尸体的完整腿和长骨骼进行模拟的现实行人和机动车碰撞场景。进行参数研究,使脚的边界条件变化以及诸如装载方向,冲击速度和撞击几何形状的测试参数。该系列测试可以分类如下:(1)裂缝表征,(2)阈值速度,(3)摩擦与惯性约束,(4)前部和横向撞击,(5)拆除与Unembalmed unembalmed。各种样本的记录数据包括但不限于标本拟核测定剂,断裂模式,失效力水平和计算弯曲时刻。代表性值包括以下平均值:胫骨的失效力范围为1.19至7.07 kn。股骨的失败力范围为1.31至8.37 kn。弯曲时刻平均约100至500nm。这些值根据影响的速度,撞击器几何形状,影响方向,标本性别等而变化。结果和观察可能有助于评估任何保护或减要装置或策略的有效性。

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