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Fully-Coupled Multi-Body Dynamics and Nonlinear Structural Analysis Applied to Automotive Dynamic Analysis

机译:完全耦合的多体动力学和非线性结构分析应用于汽车动力学分析

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Both multi-body dynamics and finite element tools are widely and effectively used in automotive design. These tools have typically been augmented with numerous custom extensions which greatly enhance their utility. The capability of such tools has considerable overlap in such areas as mechanical joints, contact detection, and, of most interest here, linear (modal) structural analysis. By contrast, nonlinear structural effects, particularly large deformations, remain the domain of the nonlinear structural analysis tools. Such effects cannot easily be included when using multi-body dynamics analysis tools. Recently, a novel approach has been described through which existing, mature analysis codes can be combined into a single analysis tool that continues to leverage all of the validation, existing models and extensions of the component analysis codes. As a demonstration of this approach, MSC's MD Adams (Adams), a multi-body dynamics code, and MD.Nastran/Sol(400) (Nastran), a nonlinear structural analysis code, have been integrated. This paper describes the use of such an integrated analysis tool to perform a dynamic analysis of a twist-beam type automotive rear suspension. The results will be compared to those generated from the same model using only the existing linear (modal) structural analysis capability of the multi-body dynamics analysis code.
机译:多体动力学和有限元工具均广泛且有效地用于汽车设计。这些工具通常已经增强了许多自定义扩展,这大大增强了其实用程序。这种工具的能力在机械接头,接触检测和大多数兴趣的区域中具有相当大的重叠,并且在这里,线性(模态)结构分析。相比之下,非线性结构效应,特别是大变形,仍然是非线性结构分析工具的域。使用多体动力学分析工具时,不容易包括此类效果。最近,已经描述了一种新的方法,可以将现有的成熟分析代码组合成一个分析工具,该工具继续利用所有验证,现有模型和分量分析代码的扩展。作为这种方法的演示,MSC的MD ADAMS(ADAMS),多体动态代码和MD.Nastran / Sol(400)(Nastran),非线性结构分析代码已被集成。本文介绍了这种综合分析工具的使用来执行扭梁式汽车后悬架的动态分析。将结果与仅使用多体动态分析代码的现有线性(模态)结构分析能力相同模型产生的结果。

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