首页> 外文期刊>Journal of biomechanical engineering. >Predicting the impact response of a nonlinear single-degree-of-freedom shock-absorbing system from the measured step response
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Predicting the impact response of a nonlinear single-degree-of-freedom shock-absorbing system from the measured step response

机译:根据测得的阶跃响应预测非线性单自由度减震系统的冲击响应

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We measured the step response of a surrogate human pelvis/impact pendulum system at force levels between 50 and 350 N. We then fit measured response curves with four different single-degree-of-freedom models, each possessing a single mass, andsupports of the following types: standard linear solid, Voigt, Maxwell, and spring. We then compared model predictions of impact force during high-energy collisions (pendulum impact velocity ranging from 1.16 to 2.58 m/s) to force traces from actualimpacts to the surrogate pelvis. We found that measured peak impact forces, which ranged from 1700 to 5600 N, were best predicted by the mass-spring, Maxwell, and standard linear solid models, each of which had average errors less than 3 percent. Reducedaccuracy was observed for the commonly used Voigt model, which exhibited an average error of 10 percent. Considering that the surrogate pelvis system used in this study exhibited nonlinear stiffness and damping similar to that observed in simulated fallimpact experiments with human volunteers, our results suggest that these simple models allow impact forces in potentially traumatic falls to be predicted to within reasonable accuracy from the measured response of the body in safe, simulated collisions.
机译:我们在50至350 N的力水平下测量了替代人骨盆/撞击摆系统的阶跃响应。然后,我们用四个不同的单自由度模型拟合了测量的响应曲线,每个模型都具有一个质量,并支持以下类型:标准线性实体,Voigt,Maxwell和弹簧。然后,我们将高能碰撞(摆锤的撞击速度范围从1.16到2.58 m / s)与从实际撞击到替代骨盆的力迹线的模型预测值进行了比较。我们发现,质量弹簧,麦克斯韦和标准线性实体模型可以最好地预测测得的峰值冲击力(范围为1700至5600 N),每个模型的平均误差均小于3%。对于常用的Voigt模型,观察到精度降低,其平均误差为10%。考虑到本研究中使用的替代骨盆系统表现出的非线性刚度和阻尼与在人类志愿者进行的模拟跌倒冲击实验中观察到的相似,因此我们的结果表明,这些简单的模型可以预测潜在跌倒冲击力在合理的准确度范围内。在安全的模拟碰撞中测量身体的反应。

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