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A Knowledge-Based Method for Innovative Design for Additive Manufacturing Supported by Modular Ontologies

机译:模块化本体支持的基于知识的增材制造创新设计方法

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摘要

Additive manufacturing (AM) offers significant opportunities for product innovation in many fields provided that designers are able to recognize the potential values of AM in a given product development process. However, this may be challenging for design teams without substantial experience with the technology. Design inspiration based on past successful applications of AM may facilitate application of AM even in relatively inexperienced teams. While designs for additive manufacturing (DFAM) methods have experimented with reuse of past knowledge, they may not be sufficient to fully realize AM's innovative potential. In many instances, relevant knowledge may be hard to find, lack context, or simply unavailable. This design information is also typically divorced from the underlying logic of a products' business case. In this paper, we present a knowledge based method for AM design ideation as well as the development of a suite of modular, highly formal ontologies to capture information about innovative uses of AM. This underlying information model, the innovative capabilities of additive manufacturing (ICAM) ontology, aims to facilitate innovative use of AM by connecting a repository of a business and technical knowledge relating to past AM products with a collection of knowledge bases detailing the capabilities of various AM processes and machines. Two case studies are used to explore how this linked knowledge can be queried in the context of a new design problem to identify highly relevant examples of existing products that leveraged AM capabilities to solve similar design problems.
机译:如果设计人员能够识别给定产品开发过程中AM的潜在价值,那么增材制造(AM)将为许多领域的产品创新提供重大机遇。但是,这对于没有大量技术经验的设计团队可能是一个挑战。即使在相对缺乏经验的团队中,基于AM过去成功应用的设计灵感也可能会促进AM的应用。尽管增材制造(DFAM)方法的设计已经尝试了对过去知识的重用,但它们可能不足以完全实现AM的创新潜力。在许多情况下,相关知识可能很难找到,缺乏上下文或根本就不可用。该设计信息通常也与产品业务案例的基本逻辑脱节。在本文中,我们提出了一种基于知识的AM设计思想方法,以及一套模块化,高度正式的本体的开发,以捕获有关AM创新用途的信息。这种基础信息模型,即增材制造(ICAM)本体的创新能力,旨在通过将与过去的AM产品有关的业务和技术知识的存储库与详细说明各种AM功能的知识库连接起来,从而促进AM的创新使用。流程和机器。使用两个案例研究来探索如何在新的设计问题的背景下查询此链接的知识,以识别利用AM功能解决相似设计问题的现有产品的高度相关示例。

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