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A Scalable “Design for Costing” Platform: A Practical Case in Ball Valves Industry

机译:可扩展的“成本计算设计”平台:球阀行业的实际案例

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Market competitiveness forces companies to explore novel methods and tools to make the overall product development (PD) agile and flexible and to reduce time to market. Accurate and fast cost estimation during design represents one of the most promising strategic actions to achieve these goals. In this context, a knowledge-based system that analyses the 3D CAD model of the product and automatically determines the manufacturing operations is developed. It consists of a scalable platform implementing “Design for Costing” paradigm. It is actually able to recognize geometric and non-geometric features from the 3D model and its attributes and calculate the final cost as the sum of raw materials, production cycles and setting operations thanks to the application of a set of knowledge-based rules mapping manufacturing processes and modeling features. While previous research works deepened the main technological issues of system development, this paper presents a practical case in ball valves industry to illustrate a structured methodology based on systematic engineering approach to apply the platform at the different stages of the product lifecycle and to verify the reliability of the implemented rules and the efficiency of the achieved process. The obtained results are compared to the traditional PD process to calculate product costs in order to highlight the main benefits.
机译:市场竞争力迫使公司探索新颖的方法和工具,以使整体产品开发(PD)敏捷灵活,并缩短产品上市时间。在设计过程中准确,快速地估算成本是实现这些目标的最有希望的战略行动之一。在这种情况下,开发了一种基于知识的系统,该系统分析产品的3D CAD模型并自动确定制造操作。它由一个可扩展的平台组成,该平台实现了“成本计算设计”范例。实际上,由于应用了一组基于知识的规则映射制造,因此它实际上能够从3D模型及其属性中识别几何和非几何特征,并将最终成本计算为原材料,生产周期和设置操作的总和。流程和建模功能。尽管先前的研究工作加深了系统开发的主要技术问题,但本文仍以球阀行业为例,以基于系统工程方法的结构化方法论为基础,以将该平台应用于产品生命周期的不同阶段并验证其可靠性。实施规则和实现过程的效率。将获得的结果与传统的PD过程进行比较,以计算产品成本,以突出其主要优点。

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