A vision for a lightweight railway wheelset of the future

Author:

Bruni Stefano1ORCID,Mistry Preetum J2ORCID,Johnson Michael S2,Bernasconi Andrea1,Carboni Michele1,Formaggioni Davide3,Carra Guido3,Macchiavello Sergio4,Ferrante Edoardo4,Kaiser Ingo5,Viñolas Jordi5,Marazzi Irene6

Affiliation:

1. Department of Mechanical Engineering, Politecnico di Milano, Milano, Italy

2. Composites Research Group, Faculty of Engineering, University of Nottingham, Nottingham, UK

3. Bercella S.R.L, Italy

4. RINA Consulting S.p.A, Genova, Italy

5. Politécnica Nebrija, Universidad Nebrija, Madrid, Spain

6. Lucchini R.S. SpA, Lovere, Italy

Abstract

Rail vehicle lightweighting using fibre reinforced polymer composite materials is essential for the future of rail. This is recognised as a means of reducing carbon dioxide production through lower energy consumption, as well as reducing the impact on track degradation, thus delivering improved rail capacity and performance. This paper presents an overview of the work conducted within work package three of the NEXTGEAR project focused on the ‘wheelset of the future’. Three concepts for a hybrid metallic-composite railway axle are proposed and their strengths and weaknesses are assessed. A finite element analysis on the selected concept was conducted, including a solution for the bonded joints of the metallic collars which provide the interface to the wheels and bearings. An axle mass reduction of over 63% was shown. An overview is also provided regarding the analysis of manufacturability of the axle, non-destructive methods for axle inspection/structural health monitoring and effects of impacts from ballast stones. Finally, a preliminary evaluation of the benefits arising from the reduction of the unsprung masses is provided, based on multibody simulations of vehicle dynamics.

Funder

Horizon 2020 Framework Programme

Engineering and Physical Sciences Research Council

Publisher

SAGE Publications

Subject

Mechanical Engineering

Reference38 articles.

1. NEXT generation methods, concepts and solutions for the design of robust and sustainable running GEAR (NEXTGEAR), http://nextgear-project.eu/ (accessed 05 May 2021).

2. Use of fibre reinforced composites in modern railway vehicles

3. Lightweighting of railway axles for the reduction of unsprung mass and track access charges

4. Design selection methodology for composite structures

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