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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Fracture Modeling Inputs for a Human Body Model via Inference from a Risk Curve: Application for Skull Fracture Potential
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Fracture Modeling Inputs for a Human Body Model via Inference from a Risk Curve: Application for Skull Fracture Potential

机译:通过风险曲线推断人体模型的骨折模型输入:颅骨骨折电位的应用

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A three-step process was developed to estimate fracture criteria for a human body model. The process was illustrated via example wherein skull fracture criteria were estimated for the Ford Human Body Model (FHBM) - a finite element model of a mid-sized human male. The studied loading condition was anterior-to-posterior, blunt (circular/planar) cylinder impact to the frontal bone. In Step 1, a conditional reference risk curve was derived via statistical analysis of the tests involving fractures in a recently-reported dataset (Cormier et al. 2011a). Therein, Cormier et al. authors reported results for anterior-to-posterior dynamic loading of the frontal bone of rigidly-supported heads of male post mortem human subjects, and fracture forces were measured in 22 cases. In Step 2, the FHBM head was used to conduct some underlying model validations relative to the Cormier tests. The model-based Force-at-Peak Stress was found to approximate the test-based Fracture Force. In Step 3, models of Cormier's setup with assumed fracture criteria were made such that they produced the experimentally-observed spread of fracture forces. Moreover, iteration was conducted on the model-based stress and strain fracture criteria (viz., σ_(ult) and ε_(ult)). The outcomes were analyzed via the same statistical approach applied in Step 1, and subject to σ_(ult) ≈ 125 MPa and ε_(ult) ≈ 2.2%, the model-based risk curve nearly identically recovered the reference test-based risk curve (i.e., PFE-based ≈ 1.03 Preference and R~2=0.99).
机译:开发了一个三步过程来估计人体模型的断裂标准。通过示例说明了该过程,其中针对福特人体模型(FHBM)(中型男性的有限元模型)估算了颅骨骨折标准。研究的加载条件是从前到后,钝器(圆形/平面)圆柱体撞击额骨。在第1步中,通过对最近报告的数据集中涉及骨折的测试进行统计分析得出条件参考风险曲线(Cormier等人2011a)。其中,Cormier等。作者报告了男性尸体解剖对象的刚性支撑头部额骨前后动负荷的结果,并测量了22例骨折力。在第2步中,FHBM负责人被用来进行一些相对于Cormier测试的基础模型验证。发现基于模型的峰值应力近似于基于测试的断裂力。在第3步中,使用假定的断裂标准建立了Cormier装置的模型,从而产生了实验观察到的断裂力分布。此外,对基于模型的应力和应变断裂准则(即σ_(ult)和ε_(ult))进行了迭代。通过步骤1中使用的相同统计方法对结果进行分析,并在σ_(ult)≈125 MPa和ε_(ult)≈2.2%的情况下,基于模型的风险曲线几乎完全恢复了基于参考测试的风险曲线(即基于PFE的≈1.03首选项,R〜2 = 0.99)。

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