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Feature-based design for heterogeneous objects

机译:基于特征的异构对象设计

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摘要

Heterogeneous objects are objects composed of different constituent materials. In these objects, multiple desirable properties from different constituent materials can be synthesized into one part. In order to obtain mass applications of such heterogeneous objects, efficient and effective design methodologies for heterogeneous objects are crucial. In this paper, we present a feature based design methodology to facilitate heterogeneous object design. Under this methodology, designers design heterogeneous objects using high-level design components that have engineering significance. These high level components are form features and material features. In this paper, we first examine the relationships between form features and material features in heterogeneous objects. We then propose three synthesized material features in accordance with our examination of these features. Based on these proposed features, we develop a feature based design methodology for heterogeneous objects. Two enabling methods for this design methodology, material heterogeneity specification within each feature and combination of these material features, are developed. A physics (diffusion) based B-spline method is developed to (1) allow design intent of material variation be explicitly captured by boundary conditions, (2) ensure smooth material variation across the feature volume. A novel method, direct face neighborhood alteration, is developed to increase the efficiency of combining heterogeneous material features. Examples of using this feature based design methodology for heterogeneous object design, such as a prosthesis design, are presented.
机译:异构对象是由不同组成材料组成的对象。在这些目的中,可以将来自不同组成材料的多种期望的特性合成为一部分。为了获得此类异构对象的大规模应用,高效且有效的异构对象设计方法至关重要。在本文中,我们提出了一种基于特征的设计方法,以促进异构对象设计。在这种方法下,设计人员使用具有工程意义的高级设计组件来设计异构对象。这些高级组件是形状特征和材料特征。在本文中,我们首先研究异质对象中形状特征和材料特征之间的关系。然后,根据对这些特征的检查,我们提出了三种合成的材料特征。基于这些提出的特征,我们为异构对象开发了一种基于特征的设计方法。开发了用于该设计方法的两种启用方法,即每个特征内的材料异质性规范以及这些材料特征的组合。开发了一种基于物理(扩散)的B样条方法,以(1)允许通过边界条件明确捕获材料变化的设计意图,(2)确保在整个特征体积上平滑的材料变化。开发了一种新颖的方法,即直接人脸邻域变更,以提高组合异质材料特征的效率。给出了使用基于特征的设计方法进行异物设计(例如假体设计)的示例。

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