首页> 外文会议>ASME(American Society of Mechanical Engineers) International Mechanical Engineering Congress: Transportation 2003: Making Tracks for Tomorrow's Transportation; 20031115-20031121; Washington,DC; US >AN INTEGRATED APPROACH FOR NUMERICAL SIMULATION OF FULL VEHICLE BEHAVIOUR DURING TRANSIENT DYNAMIC MANEUVRES ON ARBITRARY OBSTACLES AND ROAD SURFACES
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AN INTEGRATED APPROACH FOR NUMERICAL SIMULATION OF FULL VEHICLE BEHAVIOUR DURING TRANSIENT DYNAMIC MANEUVRES ON ARBITRARY OBSTACLES AND ROAD SURFACES

机译:任意障碍物和路面瞬态动态操纵过程中整车性能数值模拟的综合方法

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This work describes a numerical methodology based on the finite element method used for the transient dynamic simulation of the full vehicle rolling on different kind of obstacles. Some issues related to the tire finite element model development and its validation, by numerical-experimental comparison, have been discussed. The strategy to combine the static simulations such as the tire inflating, the vehicle weight application and suspension pre loading, with transient dynamic analysis of the car rolling over the obstacle has been chosen. The methodology, based on integration of Abaqus Implicit and Explicit codes, has been successfully applied for the dynamic simulation of Fiat Punto car passing over comfort and pothole obstacle; it is in a good stage of development for a bump obstacle (misuse airbag test).
机译:这项工作描述了一种基于有限元方法的数值方法,该方法用于整车在不同种类的障碍物上滚动的瞬态动态仿真。通过数值实验比较,讨论了一些与轮胎有限元模型开发及其验证有关的问题。选择了将静态模拟(例如轮胎充气,车辆重量应用和悬架预载)与对翻越障碍物的汽车进行瞬态动态分析相结合的策略。该方法基于Abaqus隐式和显式代码的集成,已成功应用于菲亚特Punto汽车经过舒适性和坑洼障碍物的动态仿真;它正处于颠簸障碍的良好开发阶段(滥用安全气囊测试)。

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