Testing of Fiber Composite Leaf Spring for Heavy Axle Loads

Author:

Cherruault J.Y.1,Hou J.P.2,Jeronimidis G.2,Mayer R.3,Chvojan J.4

Affiliation:

1. School of Construction Management and Engineering The University of Reading, Engineering Building PO Box 225, Reading RG6 6AY, UK,

2. School of Construction Management and Engineering The University of Reading, Engineering Building PO Box 225, Reading RG6 6AY, UK

3. Sciotech Projects Ltd, 9 Heathwood Close Yateley, GU467TP, UK

4. Škoda Vyzkum s.r.o., Dynamic testing laboratory, Tylova 57, 316 00 Plzen, CZ

Abstract

This paper presents the results of quasi-static and dynamic testing of glass fiber-reinforced polyester leaf suspension for rail freight vehicles named Euroleaf. The principal elements of the suspension’s design and manufacturing process are initially summarized. Comparison between quasi-static tests and finite element predictions are then presented. The Euroleaf suspension have been mounted on a tipper wagon and tested dynamically at tare and full load on a purpose-built shaker rig. A shaker rig dynamic testing methodology has been pioneered for rail vehicles, which follows closely road vehicle suspension dynamic testing methodology. The use and evaluation of this methodology have demonstrated that the Euroleaf suspension is dynamically much softer than steel suspensions even though it is statically much stiffer. As a consequence, the suspension dynamic loading at laden loading conditions is reduced compared to the most advanced steel leaf suspension over shaker rig track tests.

Publisher

SAGE Publications

Subject

Condensed Matter Physics,Ceramics and Composites

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1. Structure Design of GFRP Composite Leaf Spring: An Experimental and Finite Element Analysis;Polymers;2021-04-07

2. Dynamic behaviors of composite leaf springs with viscoelastic cores;Mechanics Based Design of Structures and Machines;2021-03-31

3. Failure Analysis of the Longitudinal Composite Leaf Spring;Journal of Failure Analysis and Prevention;2020-08

4. A theoretical model used for determining the stiffness of composite leaf springs with a main spring and an auxiliary spring;Journal of the Brazilian Society of Mechanical Sciences and Engineering;2019-12-18

5. Optimization of a mono-composite leaf spring using a hybrid fiber-layup approach;International Journal on Interactive Design and Manufacturing (IJIDeM);2019-11-01

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