Introducing design for selective laser melting in aerospace industry☆

Author:

Stolt Roland1,Elgh Fredrik1

Affiliation:

1. Department of Industrial Product Development, Production and Design, School of Engineering, Jonkoping University, Gjuterigatan 5, 551 11 Jonkoping, Sweden

Abstract

Abstract The selective laser melting (SLM) process has created new possibilities for the manufacture of new lightweight jet engine components with lattice structures replacing solid sections. Hopes are to reduce the density of the component and thereby saving weight. To introduce the new manufacturing process, the components need to be redesigned and verified to comply with an array of requirements concerning, for example, strength, aerodynamics, and manufacturing. To find out how a capability of designing and evaluating components for the SLM process can be built into an organization, an interview investigation has been conducted at an aerospace company finding the state of practice in technology and product development. The impact of introducing SLM is thereafter estimated. The result is that introducing a novel manufacturing process will primarily influence the methods used to predict product lifecycle performance. An important finding is that it is currently difficult to include a topology optimization step in the multiobjective design evaluation environment used at the company due to which the complexity would increase significantly.

Publisher

Oxford University Press (OUP)

Subject

Computational Mathematics,Computer Graphics and Computer-Aided Design,Human-Computer Interaction,Engineering (miscellaneous),Modelling and Simulation,Computational Mechanics

Reference32 articles.

1. Requirements management in practice: Findings from an empirical study in the automotive industry;Almefelt;Research in Engineering Design,2006

2. Design and topology optimization of lattice structures using deformable implicit surfaces for additive manufacturing;Arisoy;Proceedings of the ASME 2015 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, IDETC/CIE 2015, 2–5 August, 2015 Boston, United States. 4,2015

3. The design for additive manufacturing worksheet;Booth;Journal of Mechanical Design,2017

4. Topology optimization for additive manufacturing;Brackett;Proceedings of the 22nd Annual International Solid Freeform Fabrication Symposium - An Additive Manufacturing Conference, SFF 2011, 8–10 August, 2011, Austin, TX; United States,2011

5. High specific strength and stiffness structures produced using selective laser melting;Challis;Materials and Design,2014

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