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MANUFACTURABILITY ANALYSIS AND DESIGN FEEDBACK SYSTEM DEVELOPED USING SEMANTIC FRAMEWORK

机译:使用语义框架开发的可制造性分析与设计反馈系统

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Early manufacturability feedback is critical for reducing product cost and lead-time. This paper describes a new architecture and platform for authoring and applying manufacturability rules for design. The key step is to define a domain-specific ontology by creating a higher-level semantic language that describes design and manufacturing concepts relevant to specific manufacturing processes. This language has two primary uses; express design in the context of manufacturing and relate manufacturing constraints on design as declarative rules. OWL and Jena (a reasoning engine) are used in the background to reason about specific designs and provide manufacturability feedback in a client-server model. The use of Semantic Web technology makes it easier to augment manufacturability feedback with a query system for the designer that utilizes the same rule knowledge base to answer what-if scenarios. This is implemented using SPARQL and using the CAD design context and so enhances the user experience. This novel approach makes it easier for the domain experts to write or verify rules and the designers to validate concepts before changing the CAD model. This helps in maintaining the independence between the CAD platform and core enterprise knowledge. A pilot study in the sheet metal domain is implemented to demonstrate the steps necessary for complete early manufacturability analysis software and highlights the benefits of this approach.
机译:早期的可制造性反馈对于降低产品成本和带款至关重要。本文介绍了用于创作和应用设计的可制造性规则的新架构和平台。关键步骤是通过创建描述与特定制造过程相关的设计和制造概念的更高级别语义来定义特定于域的本体。这种语言有两个主要用途;在制造背景下表达设计并将制造限制与设计作为声明规则相关。猫头鹰和jena(推理引擎)在后台使用了关于特定设计的原因,并在客户端 - 服务器模型中提供可制造性反馈。语义Web技术的使用使得可以更轻松地增加具有用于设计器的查询系统的可制造性反馈,该系统利用相同的规则知识库来回答什么方案。这是使用SPARQL实现的,并使用CAD设计上下文来增强用户体验。这种新颖的方法使域专家更容易编写或验证规则和设计者在更改CAD模型之前验证概念。这有助于保持CAD平台与核心企业知识之间的独立性。实施钣金域中的试验研究以演示完整早期可制造性分析软件所需的步骤,并突出了这种方法的好处。

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