【24h】

FROM CAD MODELS TO F.E. SIMULATIONS THROUGH A FEATURE-BASED APPROACH

机译:通过基于功能的方法从CAD模型到F.E.仿真

获取原文
获取原文并翻译 | 示例

摘要

The preparation of simulation models from CAD models is still a difficult task since shape changes are often required to adapt a component or a mechanical system to the hypotheses and specifications of the simulation model. Detail removal or idealization operations are among the current treatments performed during the preparation of simulation models. In this paper we introduce the concept of simplification features, which allows a user to improve the efficiency of the analysis model generation process. Therefore Form Feature semantics and simulation data are attached to a polyhedral model during the preparation phase, to ease the Finite Element (FE) details identification and removal. The process flow corresponding to the insertion of the FE model preparation phase into the CAD/FEA framework is described in detail to highlight the versatility of the process according to the category of the input model as well as the main steps of the simplification process. This process flow stresses also the influence of the different information sources involved in the preparation task. They consist of the geometric and feature data of the object and the mechanical data of related to the process under examination. The need of a topological model able to represent non-manifold components is discussed as well as the need for the to user to specify the analysis attributes over the boundary of components either isolated or part of an assembly The proposed topological representation of allows the software application to combine several geometric representations such as Form feature and polyhedral representations; therefore it is possible to propagate the B-Rep information from a STEP file, as well as feature information into the polyhedral representation used during the simplification process.
机译:从CAD模型准备仿真模型仍然是一项艰巨的任务,因为通常需要更改形状以使组件或机械系统适应仿真模型的假设和规格。细节移除或理想化操作是在准备仿真模型期间执行的当前处理之一。在本文中,我们介绍了简化功能的概念,它使用户可以提高分析模型生成过程的效率。因此,表单特征语义和模拟数据在准备阶段会附加到多面体模型上,以简化有限元(FE)细节的识别和删除。详细介绍了与将FE模型准备阶段插入CAD / FEA框架相对应的过程流程,以根据输入模型的类别以及简化过程的主要步骤突出过程的多功能性。此流程还强调了准备任务中涉及的不同信息源的影响。它们由对象的几何和特征数据以及与检查过程相关的机械数据组成。讨论了需要一种能够表示非流形组件的拓扑模型的需求,以及用户需要在孤立的或组件的一部分的组件边界上指定分析属性的需求。所建议的拓扑表示允许软件应用组合几种几何表示,例如“形状特征”和多面体表示;因此,可以将来自STEP文件的B-Rep信息以及特征信息传播到简化过程中使用的多面体表示中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号