...
首页> 外文期刊>Procedia CIRP >Storing and Retrieving Design Solution in the Physical Domain Based on DFX Tools and Morphological Analysis
【24h】

Storing and Retrieving Design Solution in the Physical Domain Based on DFX Tools and Morphological Analysis

机译:基于DFX工具和形态分析的物理领域存储和检索设计解决方案

获取原文
           

摘要

Today the design of a new product has become a very challenging process, due to the growing number of aspects that a product needs to deal with during his life cycle. Like: regulations from authorities, expectations from costumers, company's capabilities and more. To cope with this growing complexity, the field of design theories and methodologies is full of tools and methodologies that were developed to structure the design process. Axiomatic design is one those design methods that was built in the perspective of setting a rational framework where the design process must go through. The general idea of axiomatic design is to divide the design process into four domains: costumer, functional, physical and process domains. In this framework the designer needs to structure his design by mapping between those domains while in the same time respecting two fundamental axioms. (a) The independence axiom, (b) the information axiom. The zigzagging process for the transition between functional and physical domains starts by defining the functional requirement, from which the design parameters are driven and end up by selecting the physical solution. In this work a methodology for storing and retrieving physical solution for a given design parameters is proposed. The physical solutions are stored based on their level of attainment in regard to a number of predefined criteria. Most of those criteria can be derived from Design for X tools. Then using morphological analysis method, suitable physical solution is retrieved in regard to the level of attainment that we can reach in the predefined criteria. For illustrative purpose a program was designed to reflect the benefit of this method. This program was developed using Python programming language and his graphical user interface Tkinter.
机译:今天,由于产品在其生命周期中需要处理的方面越来越多,因此新产品的设计已成为一个非常具有挑战性的过程。如:当局的法规,客户的期望,公司的能力等等。为了应对这种日益增长的复杂性,设计理论和方法论领域充满了为构建设计过程而开发的工具和方法论。公理化设计是从设置合理的框架的角度构建的那些设计方法,设计过程必须经过该框架。公理化设计的总体思路是将设计过程分为四个领域:客户,功能,物理和过程领域。在此框架中,设计人员需要通过在这些领域之间进行映射来构造自己的设计,同时尊重两个基本公理。 (a)独立公理,(b)信息公理。在功能域和物理域之间进行过渡的锯齿形过程始于定义功能需求,从中定义了设计需求,并通过选择物理解决方案结束了设计参数。在这项工作中,提出了一种用于存储和检索给定设计参数的物理解决方案的方法。物理解决方案是根据其相对于许多预定义标准的达到程度来存储的。这些条件中的大多数都可以从Design for X工具获得。然后使用形态学分析方法,根据我们在预定标准中可以达到的水平,检索合适的物理解决方案。为了说明的目的,设计了一个程序来反映此方法的好处。该程序是使用Python编程语言及其图形用户界面Tkinter开发的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号