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Development of human articulating joint model parameters for crash dynamics simulations

机译:碰撞动力学模拟人类铰接联合模型参数的发展

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Sophisticated computer simulation of human response during various violent force exposure situations requires not only the validated programs, but also high quality databases, especially the data sets that characterize human body structures. Although anthropometric surveys and stereophotometric studies have been performed to create geometric and inertial property databases for the human body, there have been limited efforts on establishing the joint kinematics and resistive torque data sets. This paper presents the development, implementation, and validation of the human articulating joint model parameters for crash dynamics simulations. Measured human joint data on the voluntary range of motion and passive resistive torques were used to mathematically model the shoulder, elbow, hip, knee, and ankle joints. Hip, shoulder, and ankle joints were modeled as three-degrees-of-freedom joints in which the voluntary complex sinuses of the joints were described by stop contours using flexure and azimuth angles. Twist stop angles were modeled independently. Elbow and knee joints were characterized as pin joints with one degree of freedom and stop angles at both ends of the joint motion. Joint passive resistive torques related to azimuth and flexure joint angles, twist passive resistive torques along the long bones, and viscous torques due to the relative angular velocity at the joint were described as a set of polynomials for all the joints. The joint data sets were then reduced to the input format required for the Articulated Total Body (ATB) model. ATB simulations of human sled tests were carried out to preliminarily validate the joint models. The first simulation was used to calibrate the model. Necessary adjustments in the input parameters were made until good agreements were reached between the predicted and the test results. Subsequent simulations were then performed without changing any of the model input parameters. Simulation results are reported and compared with results of human volunteer sled tests.
机译:在各种猛力曝光情况下,在各种猛力曝光情况下的人力反应的复杂计算机模拟不仅需要经过验证的计划,而且需要高质量的数据库,尤其是表征人体结构的数据集。虽然已经进行了人体测量的调查和立体光度研究以为人体创造几何和惯性物业数据库,但是在建立关节运动学和电阻扭矩数据集时已经有限努力。本文提出了用于碰撞动态模拟的人类铰接联合模型参数的开发,实施和验证。测量关于自愿运动范围和被动电阻扭矩的人的关节数据用于数学上模拟肩部,肘部,臀部,膝盖和踝关节。臀部,肩部和踝关节被建模为三度自由度关节,其中通过使用弯曲和方位角的止挡轮廓描述关节的自愿复杂鼻窦。扭转停止角度独立建模。弯头和膝关节的特征在于具有一定程度的自由度和接头运动两端的销接头的销接头。与方位角和弯曲接头角度相关的联合被动电阻扭矩,沿着长骨的扭动无源电阻扭矩,并且由于接头处的相对角速度而导致的粘性扭矩被描述为所有接头的一组多项式。然后将联合数据集减少到铰接式总体(ATB)模型所需的输入格式。进行了人类橇检查的ATB模拟,以预先验证联合模型。第一个模拟用于校准模型。在预测和测试结果之间达到了良好的协议之前,进行了输入参数中的必要调整。然后执行后续模拟而不改变任何模型输入参数。报告了仿真结果,并与人类志愿者雪橇检验结果进行了比较。

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