首页> 外文会议>The 2001 ASME International Mechanical Engineering, 2001, Nov 11-16, 2001, New York, New York >Finite Element Modeling and Simulation of Inflatable Tubular Structure Airbag
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Finite Element Modeling and Simulation of Inflatable Tubular Structure Airbag

机译:充气式管状结构安全气囊的有限元建模与仿真

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The Inflatable Tubular Structure (ITS) airbag is a potentially life-saving device that has been implemented recently in some luxury passenger vehicles. When deployed, the ITS-airbag provides primarily protection of the front seat occupant's head and face against upper side-interior car components. In the current research, a nonlinear Finite Element (FE) model for ITS-airbag system was proposed, developed, and tested in a side impact using dummy-head and neck FE model. The modeling technique of the unique behavior of the outer layer of the ITS-airbag is explained in details. Modeling such a complicated behavior of the ITS (axial shrinkage and radial expansion) was successfully performed by using a combination of diagonal truss elements combined with an isotropic fabric material. Nonlinear FE side-impact simulations for a Hybrid-III dummy-head and neck model impacting a vehicle's side glassing, roof-rail, and B-pillar using the ITS airbag system were conducted using the explicit FE code LS-DYNA. The developed ITS model has reduced the Head Injury Criteria (HIC) and the peak-acceleration of the dummy-head significantly. The results indicated the ability of the developed finite element model to represent the real ITS airbag system and therefore provide a reliable nonlinear FE simulation results that could be used to test, improve, and validate the implementation of the ITS airbag systems in more vehicles.
机译:充气管状结构(ITS)安全气囊是一种潜在的救生设备,最近已在一些豪华乘用车中实现。展开时,ITS安全气囊主要为前排乘员的头部和面部提供保护,使其免受上部内部-内部汽车部件的伤害。在当前的研究中,提出,开发和开发了用于侧面碰撞的ITS气囊系统的非线性有限元(FE)模型,并使用了虚拟头部和颈部有限元模型。详细解释了ITS安全气囊外层独特行为的建模技术。通过将对角桁架元素与各向同性织物材料结合使用,可以成功地对ITS的这种复杂行为(轴向收缩和径向膨胀)进行建模。使用显式FE代码LS-DYNA,使用ITS安全气囊系统对Hybrid-III假人头部和颈部模型影响车辆侧面玻璃,车顶纵梁和B柱的非线性有限元侧面碰撞仿真。开发的ITS模型已大大降低了头部受伤标准(HIC)和虚拟头部的峰值加速度。结果表明,开发的有限元模型能够代表实际的ITS气囊系统,因此提供了可靠的非线性有限元仿真结果,可用于测试,改进和验证ITS气囊系统在更多车辆中的实施。

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