Implementation of dimensional management methodology and optimisation algorithms for pre-drilled hinge line interfaces of critical aero assemblies – A case study

Author:

Bacharoudis Konstantinos C1ORCID,Bainbridge David1,Turner Alison1,Popov Atanas A1,Ratchev Svetan M1

Affiliation:

1. Institute for Advanced Manufacturing, Faculty of Engineering, University of Nottingham, Nottingham, UK

Abstract

A dimensional management procedure is developed and implemented in this work to deal with the identification of the optimum hole diameter that needs to be pre-drilled in order to successfully join two subassemblies in a common hinge line interface when most of the degrees of freedom of each subassembly have already been constrained. Therefore, an appropriate measure is suggested that considers the assembly process and permits the application of optimisation algorithms for the identification of the optimum hole diameter. The complexity of the mechanical subassemblies requires advanced 3D tolerance analysis techniques to be implemented and the matrix method was adopted. The methodology was demonstrated for an industrial, aerospace engineering problem, that is, the assembly of the joined wing configuration of the RACER compound rotorcraft of AIRBUS Helicopter and the necessary tooling needed to build the assembly. The results indicated that hinge line interfaces can be pre-opened at a sufficiently large size and thus, accelerate the assembly process whilst the suggested methodology can be used as a decision-making tool at the design stage of this type of mechanical assembly.

Funder

Clean Sky2

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference31 articles.

1. United States Government Printing. Defense manufacturing management guide for program managers, http://www.aptcorp-us.com/images/mfg-guidebook-10-16-12.pdf (2012, accessed 10 June 2020).

2. Dimensional control as an integral part of next-generation aircraft development

3. A comprehensive study of three dimensional tolerance analysis methods

4. Generalized 3-D tolerance analysis of mechanical assemblies with small kinematic adjustments

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