在BRep CAD模型上交互式地定义空间变化的fgm

T. H. Luu, C. Altenhofen, A. Stork, D. Fellner
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引用次数: 1

摘要

增材制造(AM)已经能够以以前不可能的方式控制异质材料和结构,包括功能梯度材料(FGM)。然而,典型的计算机辅助设计(CAD)系统——主要基于边界表示(B-Rep)——并不是为建模和表示空间变化的材料信息而构建的,而这些信息是设计FGM零件的关键特征。虽然体积表示(V-Rep),如四面体或六面体网格,三元样条或细分实体可以保存必要的FGM信息,但默认情况下,它们与现有的CAD模型不兼容。因此,增材制造的能力激励增强CAD系统,以支持体积材料分配和分配。我们提出了一种基于分级特征和过渡函数的交互式、直观和高效的交互概念,用于使用我们的系统gramacad(分级多材料CAD)为多材料制造增加具有光滑体积材料梯度的CAD模型。这个概念的优点是非常通用,因为材料属性功能留给用户的任意性,他们可以根据需要自由修改定义。通过提供交互式预览模式,该系统可以有效地探索设计的FGM部件的体积级配。我们制作了两个功能示例,展示了该系统的可用性,并展示了通过功能梯度材料转换快速增强模型的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GraMMaCAD: Interactively Defining Spatially Varying FGMs on BRep CAD Models
Additive manufacturing (AM) has enabled control over heterogeneous materials and structures in ways that were not previously possible, including functionally graded materials (FGM). However, typical computer aided design (CAD) systems — mainly based on boundary representations (B-Rep) — are not built for modeling and representing spatially varying material information, which are the key features for designing FGM parts. While volumetric representations (V-Rep) such as tetrahedral or hexahedral meshes, trivariate splines or subdivision solids can hold the necessary FGM information, they are by default not compatible with existing CAD models. Thus, the capabilities of AM motivate enhancing CAD systems to support volumetric material allocation and distribution. We present an interactive, intuitive and efficient interaction concept based on grading features and transition functions for augmenting CAD models with smooth volumetric material gradients for multi-material fabrication using our system called GraMMaCAD (Graded Multi-Material CAD). This concept has the advantage of being extremely versatile, since the material property functions are left to the arbitrariness of the user, who is free to modify their definition as needed. By providing interactive preview modes, the system allows for efficient exploration of the volumetric gradation of the designed FGM part. We fabricated two functional examples that demonstrate the usability of the system and show the ability to quickly augment models with functionally graded material transitions.
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