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Anisotropic composite human skull model and skull fracture validation against temporo-parietal skull fracture

机译:各向异性复合人类颅骨模型及颅骨骨折对颞顶颅骨骨折的验证

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摘要

A composite material model for skull, taking into account damage is implemented in the Strasbourg University finite element head model (SUFEHM) in order to enhance the existing skull mechanical constitutive law. The skull behavior is validated in terms of fracture patterns and contact forces by reconstructing 15 experimental cases. The new SUFEHM skull model is capable of reproducing skull fracture precisely. The composite skull model is validated not only for maximum forces, but also for lateral impact against actual force time curves from PMHS for the first time. Skull strain energy is found to be a pertinent parameter to predict the skull fracture and based on statistical (binary logistical regression) analysis it is observed that 50% risk of skull fracture occurred at skull strain energy of 544.0. mJ.
机译:斯特拉斯堡大学的有限元头部模型(SUFEHM)实现了一种考虑到损伤的颅骨复合材料模型,以增强现有的颅骨机械本构关系。通过重建15个实验案例,根据骨折类型和接触力验证了头骨的行为。新的SUFEHM头骨模型能够精确再现头骨骨折。复合头骨模型不仅针对最大力进行了验证,而且还针对首次来自PMHS的实际力时间曲线进行了横向冲击验证。发现颅骨应变能是预测颅骨骨折的相关参数,基于统计(二进制逻辑回归)分析,观察到颅骨骨折的风险为544.0,发生颅骨骨折的风险为50%。兆焦耳

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