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Explicit dynamic isogeometric B-Rep analysis of penalty-coupled trimmed NURBS shells

机译:惩罚耦合修剪的NURBS壳的显式动态等几何B-Rep分析

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Isogeometric B-Rep Analysis (IBRA) was the first approach that enabled a full integration of Computer Aided Design (CAD) and Computer Aided Engineering (CAE) based on trimmed NURBS B-Rep models ubiquitous in industrial CAD. However, the applicability of IBRA to explicit dynamic problems such as vehicle crash simulations and especially the effect of trimming and penalty coupling on the critical time step were not systematically investigated in the literature. To fill this gap, we developed Explicit IBRA, a combination of the patch coupling capabilities of IBRA with the explicit dynamic features of the FE solver LS-DYNA.For Explicit IBRA, we particularly (i) developed a new penalty-based B-Rep element formulation for the application to a Reissner-Mindlin shell with six degrees of freedom, (ii) formally extended the IBRA theory to explicit time integration schemes, (iii) showed that the common stability criterion and the maximum eigenvalue-based time step estimation from FE still hold, and (iv) used the IBRA exchange format to implement a closed design workflow between the CAD program Rhinoceros and the solver LS-DYNA. We solved selected benchmark problems, from quasi-static linear elastic to highly dynamic elasto-plastic with large deformations, and obtained accurate results with penalty factors that cause no or only a minor decrease in stable time step size. That is, we found that penalty coupling does not have a severe impact on the critical time step in explicit analysis, making Explicit IBRA practically applicable. Finally, we studied an industrial BMW engine bonnet model under dynamic loading and observed good agreement with reference finite element simulations. (C) 2019 Elsevier B.V. All rights reserved.
机译:等几何B-Rep分析(IBRA)是基于工业CAD中普遍使用的NURBS B-Rep修整模型实现计算机辅助设计(CAD)和计算机辅助工程(CAE)的完全集成的第一种方法。但是,在文献中没有系统地研究过IBRA对明显的动态问题的适用性,例如车辆碰撞模拟,尤其是微调和惩罚耦合对关键时间步的影响。为了填补这一空白,我们开发了Explicit IBRA,它将IBRA的斑驳耦合功能与FE解算器LS-DYNA的显式动态功能相结合。对于Explicit IBRA,我们特别(i)开发了一种基于惩罚的新B-Rep应用于六自由度Reissner-Mindlin壳的单元公式,(ii)将IBRA理论正式扩展到显式时间积分方案,(iii)表明,共同稳定性准则和基于最大特征值的时间步长估计是基于FE仍然持有,并且(iv)使用IBRA交换格式在CAD程序Rhinoceros和求解器LS-DYNA之间实现了封闭的设计工作流程。我们解决了选定的基准问题,从准静态线性弹性到具有大变形的高动态弹塑性,并获得了精确的结果,但惩罚因子不会或只会导致稳定时间步长的减小。也就是说,我们发现惩罚耦合对显式分析中的关键时间步骤没有严重影响,这使Explicit IBRA切实可行。最后,我们研究了动态负载下的工业宝马发动机引擎盖模型,并观察到与参考有限元模拟的良好一致性。 (C)2019 Elsevier B.V.保留所有权利。

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