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Parametric CAD modeling: An analysis of strategies for design reusability

机译:参数化CAD建模:设计可重用性策略分析

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CAD model quality in parametric design scenarios largely determines the level of flexibility and adaptability of a 3D model (how easy it is to alter the geometry) as well as its reusability (the ability to use existing geometry in other contexts and applications). In the context of mechanical CAD systems, the nature of the feature-based parametric modeling paradigm, which is based on parent-child interdependencies between features, allows a wide selection of approaches for creating a specific model. Despite the virtually unlimited range of possible strategies for modeling a part, only a small number of them can guarantee an appropriate internal structure which results in a truly reusable CAD model. In this paper, we present an analysis of formal CAD modeling strategies and best practices for history-based parametric design: Delphi's horizontal modeling, explicit reference modeling, and resilient modeling. Aspects considered in our study include the rationale to avoid the creation of unnecessary feature interdependencies, the sequence and selection criteria for those features, and the effects of parent/child relations on model alteration. We provide a comparative evaluation of these strategies in the form of a series of experiments using three industrial CAD models with different levels of complexity. We analyze the internal structure of the models and compare their robustness and flexibility when the geometry is modified. The results reveal significant advantages of formal modeling methodologies, particularly resilient techniques, over non-structured approaches as well as the unexpected problems of the horizontal strategy in numerous modeling situations. (C)2016 Elsevier Ltd. All rights reserved.
机译:参数化设计方案中的CAD模型质量在很大程度上决定了3D模型的灵活性和适应性水平(更改几何图形的容易程度)以及其可重用性(在其他上下文和应用程序中使用现有几何图形的能力)。在机械CAD系统的上下文中,基于特征的参数化建模范式的本质基于特征之间的父子相互依存关系,因此可以选择多种方法来创建特定模型。尽管建模零件的可能策略几乎是无限的,但是只有少数几个策略可以保证合适的内部结构,从而形成真正可重用的CAD模型。在本文中,我们对基于历史的参数设计的正式CAD建模策略和最佳实践进行了分析:Delphi的水平建模,显式参考建模和弹性建模。在我们的研究中考虑的方面包括避免创建不必要的特征相互依赖性的理由,这些特征的顺序和选择标准以及父子关系对模型更改的影响。我们通过使用具有不同复杂性级别的三个工业CAD模型的一系列实验的形式,对这些策略进行了比较评估。我们分析模型的内部结构,并在修改几何形状时比较它们的鲁棒性和灵活性。结果表明,与非结构化方法相比,形式化建模方法(尤其是弹性技术)具有显着优势,并且在许多建模情况下都存在横向策略的意外问题。 (C)2016 Elsevier Ltd.保留所有权利。

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