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Integration of computer-aided design and analysis: application to multibody vehicle systems

机译:计算机辅助设计和分析集成:应用于多体车辆系统的应用

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摘要

Virtual design and durability investigations are currently performed in automotive industries using three different and incompatible systems: computer-aided design (CAD) system for geometry creation, finite element(FE) software for developing the analysis mesh, and multibody system (MBS)software for automatically generating and numerically solving the differential-algebraic equations (DAE's). This paper proposes a new computer-aided engineering (CAE) approach based on the integration of computer-aided design and analysis (I-CAD-A). The proposed mechanics-based approach achieves seamless geometry/analysis integration, and allows for solid modelling multi-component systems from the outset. The geometrically accurate mechanics-based solid models can be systematically used as the analysis meshes in the small deformation floating frame of reference (FFR) and/or in the large deformation absolute nodal coordinate formulation (ANCF) investigations. In this new approach, ANCF finite elements are used as the basis for creating the geometry for both small and large deformation analyses. In the case of small deformations, ANCF geometry is systematically converted to reduced-order consistent rotation-based formulation (CRBF) FFR mesh, which can be systematically used with standard coordinate reduction techniques to eliminate high-frequency insignificant modes of vibration. The paper discusses the fundamental differences between the proposed method and the isogeometric analysis (IGA) approach and presents illustrative pilot examples to demonstrate the new concepts and the feasibility of developing the mechanics-based design procedure.
机译:目前使用三种不同和不相容的系统(用于开发分析网格的电脑辅助设计(CAD)系统,用于开发分析网格的有限元素(FE)软件,以及用于开发分析网格的有限元系统(MBS)软件的虚拟设计和耐用性调查自动生成和数值求解差分代数方程(DAE)。本文提出了一种基于计算机辅助设计和分析(I-CAD-A)集成的新的计算机辅助工程(CAE)方法。所提出的基于技工的方法实现了无缝的几何/分析集成,并允许从一开始就固体建模多组件系统。可以系统地使用几何精确的基于基于机械的固体模型作为参考(FFR)的小变形浮动框架中的分析网格和/或在大变形绝对节点坐标配方(CNANF)调查中。在这种新方法中,ANCF有限元用作创建小型和大变形分析的几何形状的基础。在小变形的情况下,系统地转换为减少一致的基于旋转的基于旋转的制剂(CRBF)FFR网格,其可以系统地与标准坐标减小技术一起使用,以消除高频微不足道的振动模式。本文讨论了所提出的方法和异步分析(IGA)方法之间的根本差异,并提出了说明性试点例证,以证明开发基于机械的设计程序的新概念和可行性。

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