首页> 外文期刊>Journal of mechanics in medicine and biology >INVESTIGATION ON THE KNEE STIFFNESS UNDER THE LATERAL IMPACT FOR THE DESIGN OF PEDESTRIAN LEGFORM IMPACTOR
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INVESTIGATION ON THE KNEE STIFFNESS UNDER THE LATERAL IMPACT FOR THE DESIGN OF PEDESTRIAN LEGFORM IMPACTOR

机译:侧向冲击下的膝关节刚度研究。

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The objective of the present study is to investigate the stiffness of the knee joint, in order to provide a basis for developing a biofidelic pedestrian legform impactor. A biofidelic lower limb model was employed to replicate structural responses of the human knee joint by finite element simulations. In the simulation, a single displacement was imposed on the thigh or leg, and constrained six freedoms of the other part. As a result, nonlinear load-displacement data were approximated by a linear regression to determine the stiffness. Considering knee joint kinematics under lateral car-pedestrian impacts, a stiffness matrix was established including lateral bending, lateral shearing and torsion effects that significantly influence pedestrian lower limb injuries. Then, this stiffness matrix was applied in a developed legform model. The structural responses of the legform were obtained by the impact with a family car model. Finally, the legform biofidelity was evaluated by comparing the global kinematics of the pedestrian lower limb.
机译:本研究的目的是研究膝关节的刚度,以便为开发生物理想的行人腿形撞击器提供基础。通过有限元模拟,采用生物纤维下肢模型来复制人膝关节的结构响应。在模拟中,对大腿或小腿施加了单个位移,并限制了另一部分的六个自由度。结果,通过线性回归对非线性载荷-位移数据进行近似以确定刚度。考虑到侧行人行道撞击下的膝关节运动学,建立了包括侧向弯曲,侧向剪切和扭转效应的刚度矩阵,该矩阵显着影响行人下肢的伤害。然后,将该刚度矩阵应用于已开发的腿形模型中。腿形的结构响应是通过家用车模型的冲击获得的。最后,通过比较行人下肢的整体运动学评估腿部生物保真度。

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