Geometry Assurance Integrating Process Variation With Simulation of Spring-In for Composite Parts and Assemblies

Author:

Jareteg Cornelia1,Wärmefjord Kristina1,Cromvik Christoffer2,Söderberg Rikard1,Lindkvist Lars1,Carlson Johan2,Larsson Stig3,Edelvik Fredrik2

Affiliation:

1. Product and Production Development, Chalmers University of Technology, Gothenburg SE-412 96, Sweden

2. Fraunhofer-Chalmers Research Centre, Chalmers Science Park, Gothenburg SE-412 88, Sweden

3. Mathematical Sciences, Chalmers University of Technology, Gothenburg SE-412 96, Sweden

Abstract

Geometrical variation and deviation in all the manufacturing processes affect the quality of the final product. Therefore, geometry assurance is an important tool in the design phase of a new product. In the automotive and aviation industries where the use of composite parts is increasing drastically, new tools within variation simulations are needed. Composite parts tend to deviate more from nominal specification compared to metal parts. Methods to simulate the manufacturing process of composites have been developed before. In this paper, we present how to combine the process variation simulation of composites with traditional variation simulations. The proposed method is demonstrated on a real complex subassembly, representing part of an aircraft wing-box. Since traditional variation simulation methods are not able to capture the spring-in and the special deviation behavior of composites, the proposed method adds a new feature and reliability to the geometry assurance process of composite assemblies.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Graphics and Computer-Aided Design,Computer Science Applications,Software

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