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The Unique Dynamic and Structural Solution of a Finite Element Representation of Full Vehicle Based on the Integrated Implicit/Explicit Approach

机译:基于综合隐含/显式方法的全车有限元表示的独特动态和结构解

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This article describes a numerical methodology, based on Finite Element approach, able to simulate, with a unique solution, the dynamic and structural response of a full vehicle running on fatigue reference roads. The current durability process is a multidisciplinary one based on a combination of three different phases: load definition, stress definition, and fatigue life prediction. For Long-Time Histories events, the second phase of this process is necessarily based on a Linear assumption using a Static or Dynamic approach. However, in durability events, some situations can lead the material to work in the plastic range, thus putting on the top the strength aspect of the performances and making these phases not independent and sequential, but strongly interdependent. The goal of the methodology reported in this article is to merge, in a unique numerical simulation, the load and stress definition phases. To this purpose, the solution of a full vehicle model of a commercial van, with a complete Finite Element representation of the body structure, running on fatigue roads, is investigated. This work represents an evolution of current load generation methodology and is able to quantify the impact of Nonlinear effects, such as contact and material plastic behavior, on structural response. A comparison of loads and stresses evaluated with the old approach and the new one is performed.
机译:本文介绍了一种基于有限元方法的数值方法,能够以独特的解决方案模拟,具有在疲劳参考道路上运行的全车辆的动态和结构响应。基于三个不同阶段的组合:负载定义,应力定义和疲劳寿命预测,当前耐久性过程是多学科载物。对于长时间历史事件,该过程的第二阶段必须基于使用静态或动态方法的线性假设。然而,在耐久性事件中,某些情况可以引导材料在塑料范围内工作,从而置于表现的强度方面,并使这些阶段不独立和顺序,但具有强烈相互依赖的。本文报告的方法的目标是在唯一数值模拟,负载和应力定义阶段合并。为此目的,研究了商业面包车的全车型的解决方案,具有完整的有限元表示体结构,在疲劳道路上运行。这项工作代表了当前负荷产生方法的演变,能够量化非线性效应的影响,例如接触和材料塑性行为,在结构响应中。使用旧方法评估的负载和应力和新的比较。

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