An integrated approach to technology platform and product platform development

Author:

Levandowski Christoffer E1,Corin-Stig Daniel1,Bergsjö Dag1,Forslund Anders1,Högman Ulf2,Söderberg Rikard1,Johannesson Hans1

Affiliation:

1. Department of Product and Production Development, Chalmers University of Technology, Gothenburg, Sweden

2. Department of Advanced Engineering, GKN Aerospace Engine Systems, Trollhättan, Sweden

Abstract

Platforms may enable offering a variety of products to the market while keeping the development cost down. Reusing design knowledge is a key concept, whether manifested as reusing parts, ideas, concepts, or technologies. This article describes processes and information technology solutions for holistically working with both technology platforms and product platforms. A platform framework was developed for managing information and to support the processes. The use of the framework is illustrated through a case study performed at a subsupplier in the aerospace industry focusing on technology development, platform-based product development, and platform configuration. A wiki system supports the technology platform, containing electronic guidelines, methods, and information about the technologies. To support the product platform, a product lifecycle management architecture is created. A turbine rear structure from a turbofan engine is used as an example, requiring several different analysis technologies to be used and coordinated when creating a variant. The solution is a product lifecycle management architecture created based on the technology platform. It integrates a product data management system, a computer-aided design tool, two computer-aided engineering tools, and a configurator.

Publisher

SAGE Publications

Subject

Computer Science Applications,General Engineering,Modelling and Simulation

Reference37 articles.

1. Platform Strategies for a Supplier in the Aircraft Engine Industry

2. Buur J (1990) “A Theoretical Approach to Mechatronics Design”, Ph.D. Thesis, Department of Engineering Design, Technical University of Denmark, Lyngby.

3. Catic A (2011) “Knowledge-based Engineering in Product Development Processes - Process, IT and Knowledge Management perspectives”, Ph.D. thesis, Department of Product and Production Development, Chalmers University of Technology, Gothenburg.

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