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Investigation of Internal Human Body Dynamic Forces Developed During a Vehicle Ride

机译:车辆骑行中开发内部人体动态力的调查

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High internal forces in the human body may have adverse effects on internal organs and may cause muscle fatigue. An estimation of these internal forces can help in predicting human body response to different types of seats, seat suspension configuration, and road profiles. It is difficult to experimentally determine these internal forces and moments. This work attempts to predict these forces and moments through 12 degrees of freedom (DoF) human body, nonlinear cushion contact force, and full car (7DoF) model integrated through an inclined multi-compression damper seat suspension. The integrated system is analyzed using MATLAB-SIMULINK for random and bump road profiles. Various response parameters such as human seat interaction and internal joint vertical and fore-aft forces and moments have been studied with different vehicle speeds and distinct types of bump profile. The results indicate that internal forces increase with the rise in vehicle speed and the sine wave bump profile generates lower internal forces compared to a circular bump profile.
机译:人体中的高内部力可能对内脏有不良影响,可能导致肌肉疲劳。这些内部力的估计可以有助于预测对不同类型的座椅,座椅悬架配置和公路轮廓的人体反应。难以通过实验确定这些内部力和时刻。这项工作试图通过12度的自由(DOF)人体,非线性垫接触力和全轿厢(7dof)模型来预测这些力和时刻通过倾斜的多压缩阻尼器座悬架集成的全轿厢(7dof)模型。使用Matlab-Simulink进行随机和凹凸路轮廓分析集成系统。已经研究了各种响应参数,例如人体座椅相互作用和内部关节垂直和前后力和矩,具有不同的车速和不同类型的凸块轮廓。结果表明,与圆形凸块轮廓相比,内部力随着车辆速度的增加而增加,正弦波凸块轮廓产生较低的内部力。

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