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EFFECT OF INCLUDING A FETUS IN THE UTERUS OF PREGNANT OCCUPANT MODEL IN CRASH TEST SIMULATIONS

机译:在碰撞试验模拟中包括孕妇模型中子宫内胎儿的效果

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Motor vehicle accidents are the largest single cause of accidental death and the leading cause of traumatic injuries for the pregnant occupant and her fetus. Computational pregnant occupant modeling has a role to play in the investigation of the risk of fetal injuries and mortality in crash test simulations. Effective investigation depends on realistic representation of pregnant occupant and her fetus in a virtual environment. However, known pregnant occupant models normally do not include a fetus in the uterus. 'Expecting', the first computational model of a pregnant occupant with a fetus, is used in the current research. The model has a detailed multi-body representation of the fetus as well as finite element uterus and placenta. In this paper, the effect of including the fetus in the uterus of the pregnant occupant model is investigated using 'Expecting' in crash test simulations. Previously, drop test simulations with and without a fetus showed that, the presence of fetus in the uterus suggests higher risks to the fetus. Using the pregnant occupant model, 'Expecting', with and without a fetus, provides more realistic simulations to explore the role of inclusion of fetus in the uterus. Five frontal impact speeds, 15, 20, 25 30 and 35 kph with varying levels of restraint system including 'seatbelt and airbag' (ie fully restrained), 'seatbelt only', 'airbag only' and 'no restraint' are used in the simulations. Maximum strains developed in the uteroplacental interface with and without a fetus are compared. The effect of including a fetus in the pregnant occupant model is discussed.
机译:机动车辆事故是意外死亡的最大单一原因,是怀孕乘员和胎儿创伤伤害的主要原因。计算怀孕乘员建模在调查碰撞试验模拟中的胎儿损伤和死亡风险的调查中具有作用。有效的调查取决于虚拟环境中怀孕乘员和胎儿的现实表现。然而,已知的怀孕乘员模型通常不包括子宫内的胎儿。 “期待”,怀孕乘员的第一款与胎儿的计算模型用于目前的研究。该模型具有胎儿的详细多体表示以及有限元子宫和胎盘。在本文中,在碰撞试验模拟中使用“期待”研究了包括怀孕乘员模型中子宫内胎儿中的胎儿的效果。以前,用胎儿的掉落测试模拟显示,子宫内胎儿的存在表明胎儿的风险较高。使用怀孕的乘员模型,“期待”,没有胎儿,提供更现实的模拟,以探讨包含胎儿在子宫内的作用。具有不同水平的约束系统的五个正面冲击速度,15,20,25 30和35 kPh,包括“安全带和安全气囊”(即完全克制),“安全带只”,“只有”的“安全气囊”和“无克制”模拟。比较有没有胎儿的子属插入界面开发的最大菌株。讨论了在怀孕乘员模型中包括胎儿的效果。

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