Enabling Lean Design Through Computer Aided Synthesis: The Injection Moulding Cooling Case
Author(s) -
Juan Manuel Jauregui Becker,
Wessel W. Wits
Publication year - 2015
Publication title -
procedia cirp
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.683
H-Index - 65
ISSN - 2212-8271
DOI - 10.1016/j.procir.2015.08.057
Subject(s) - rework , concurrent engineering , manufacturing engineering , computer aided design , lean manufacturing , process (computing) , systems engineering , engineering design process , computer aided , injection moulding , computer science , set (abstract data type) , engineering , mechanical engineering , process engineering , embedded system , process integration , programming language , operating system
This paper explores the application of Computer Aided Synthesis (CAS) to support the implementation of Set-Based Concurrent Engineering (SBCE) and Just In Time Decision Making (JIT-DM), which are considered as two of the cornerstones of the Lean Design method. Computer Aided Synthesis refers to a next generation computational tools that automates the process of generating candidate solutions to ill-defined design problems. The design of injection moulding is used to demonstrate the rationales of the approach. This is a well-known complex and time-consuming industrial design process that generally involves rework time as a consequence of the design iteration loops performed between mould design and part design. The paper presents a tool to automate the design of cooling systems and shows how it supports the application of SBCE and JIT-DM to enable an increase in design process efficiency and effectiveness. The paper finishes with a general discussion on the enabling role that CAS tools have on the implementation of lean design practices
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