Thermomechanical fatigue of grey cast iron brake discs for heavy vehicles

Author:

Gigan Gaël1,Norman Viktor2,Ahlström Johan3,Vernersson Tore14

Affiliation:

1. Chalmers University of Technology, Applied Mechanics, Sweden

2. Management and Engineering, Linköping University, Sweden

3. Chalmers University of Technology, Materials and Manufacturing Technology, Sweden

4. ÅF Industry AB, Gothenburg, Sweden

Abstract

The development of fatigue life assessment models for vehicle components exposed to thermomechanical fatigue supports the establishing of adequate maintenance intervals that neither cause unnecessary vehicle downtime, nor jeopardize the function of the components. In modern automotive applications, braking is closely related to safety and is commonly performed with disc brakes. Failure here may result in structural damage or even breakdown and loss of lives. In the present work, the cyclic response of grey cast iron is analysed and the fatigue life of brake discs made from this material is studied by use of four different fatigue life assessment models: the Smith–Watson–Topper model, the Coffin–Manson model and two mechanism-based damage models. Results from isothermal and thermomechanical experiments on uniaxially loaded specimens are used for calibration of the models. Finally, the models are used to assess the life of a brake disc for a simulated brake dynamometer experiment. It is found that the fatigue model parameters that are calibrated using different sets of isothermal uniaxial test data show a substantial spread. A comparison with results from full-scale brake rig experiments shows that predictions by any of the models that have been calibrated using data from a well-designed thermomechanical test are in reasonable agreement with the estimated crack initiation phase for actual brake disc lives. It can be concluded that it is not sufficient to calibrate the studied fatigue life models using isothermal uniaxial tests for predictions of thermomechanical fatigue lives.

Funder

VINNOVA

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

Reference54 articles.

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4. Fash JW. Fatigue crack initiation and growth in gray cast iron. Department of Mechanical and Industrial Engineering, FCP Report No. 35, College of Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, 1980.

5. Influence of casting defects on fatigue crack initiation and fatigue limit of ductile cast iron

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