...
首页> 外文期刊>Accident Analysis & Prevention >A new mathematical neck model for a low-velocity rear-end impact dummy: evaluation of components influencing head kinematics
【24h】

A new mathematical neck model for a low-velocity rear-end impact dummy: evaluation of components influencing head kinematics

机译:低速追尾假人的新型数学颈部模型:影响头部运动学的组件评估

获取原文
获取原文并翻译 | 示例
           

摘要

A mathematical model of a new rear-end impact dummy neck was implemented using MADYMO. The main goal was to design a model with a human-like response of the first extension motion in the crash event. The new dummy neck was modelled as a series of rigid bodies (representing the seven cervical vertebrae and the uppermost thoracic element, T1) connected by pin joints, and supplemented by two muscle substitutes. The joints had non-linear stiffness characteristics and the muscle elements possessed both elastic stiffness and damping properties. The new model was compared with two neck models with the same number of vertebrae, but without muscle substitutes. The properties of the muscle substitutes and the need of these were evaluated by using three different modified neck models. The motion of Tl in the simulations was prescribed using displacement data obtained from volunteer tests. In a sensitivity analysis of the mathematical model the influence of different factors on the head-neck kinematics was evaluated. The neck model was validated against kinematics data from volunteer testst linear displacement, angular displacement, and acceleration of the head relative to the upper torso at 7 km/h velocity change. The response of the new model was within the corridor of the volunteer tests for the main part of the time history plot. This study showed that a combination of elastic stiffness and damping in the muscle substitutes, together with a non-linear joint stiffness, resulted in a head-neck response similar to human volunteers, and superior to that of other tested neck models.
机译:使用MADYMO实现了新的后端冲击假人脖子的数学模型。主要目标是设计一个模型,该模型在碰撞事件中具有类似于人的第一伸展运动的响应。新的假人脖子被建模为一系列通过针脚关节连接的刚体(代表七个颈椎和最上方的胸廓元素T1),并辅以两个肌肉替代物。关节具有非线性刚度特性,而肌肉元素同时具有弹性刚度和阻尼特性。将新模型与具有相同数量椎骨但没有肌肉替代物的两个颈部模型进行了比较。通过使用三种不同的改良颈部模型评估了肌肉替代品的特性以及对这些替代品的需求。使用从志愿者测试获得的位移数据来规定模拟中T1的运动。在数学模型的敏感性分析中,评估了不同因素对头颈部运动学的影响。根据志愿者测试的运动学数据对颈部模型进行了验证,包括线性位移,角位移和头部在7 km / h速度变化时相对于上身的加速度。对于时程图的主要部分,新模型的响应位于志愿者测试的走廊内。这项研究表明,肌肉替代物的弹性刚度和阻尼与非线性关节刚度的结合,导致了类似于人类志愿者的头颈部反应,并且优于其他测试的颈部模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号