Supporting Multifunctional Bio-Inspired Design Concept Generation through Case-Based Expandable Domain Integrated Design (xDID) Model

Q2 Engineering
Designs Pub Date : 2023-07-03 DOI:10.3390/designs7040086
Pavan Tejaswi Velivela, Y. Zhao
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引用次数: 0

Abstract

Combining different features inspired by biological systems is necessary to obtain uncommon and unique multifunctional biologically inspired conceptual designs. The Expandable Domain Integrated Design (xDID) model is proposed to facilitate the multifunctional concept generation process. The xDID model extends the previously defined Domain Integrated Design (DID) method. The xDID model classifies biological features by their feature characteristics taken from various case-based bio-inspired design examples into their respective geometric designations called domains. The classified biological features are mapped to the respective plant and animal tissues from which they originate. Furthermore, the paper proposes a representation of the functions exhibited by the biological features at the embodiment level as a combination of the integrated structure (multiscale) and the structural strategy associated with the integrated structure. The xDID model is validated using three multifunctional bio-inspired design case studies at the end of the paper.
通过基于案例的可扩展领域集成设计(xDID)模型支持多功能仿生设计概念生成
结合受生物系统启发的不同特征是获得罕见和独特的多功能生物启发概念设计的必要条件。提出了可扩展领域集成设计(xDID)模型,以促进多功能概念的生成过程。xDID模型扩展了先前定义的领域集成设计(DID)方法。xDID模型根据生物特征对生物特征进行分类,这些特征取自各种基于案例的生物启发设计示例,并被划分为各自的几何名称(称为域)。分类的生物特征被映射到它们来源的相应植物和动物组织。此外,本文提出了生物特征在实施层面上表现出的功能的表示,作为集成结构(多尺度)和与集成结构相关的结构策略的组合。论文最后通过三个多功能仿生设计案例对xDID模型进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Designs
Designs Engineering-Engineering (miscellaneous)
CiteScore
3.90
自引率
0.00%
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0
审稿时长
11 weeks
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