Valuation of TMF Lifetime Calculation Methods and their Limitations of Usability

Author:

Köberl H.1,Winter Gerhard1,Eichlseder Wilfried1

Affiliation:

1. Montanuniversität Leoben

Abstract

Cyclic loading of metallic engineering components at constant elevated or fluctuating temperature causes a complex evolution of damage which can hardly be described. At the same time the thermal expansion is restricted in some regions, due to the complex geometry of the components. Therefore, mechanical stresses occur and cyclic plastic deformation leads to thermo-mechanical fatigue (TMF) of the material. A careful analysis and comparison of the experimental results, based on a systematical variation of the relevant influence factors, allow to develop empirical models for computing the fatigue life of thermo-mechanical loaded components made of Ni alloys (IN718, Ni200/201). Different lifetime calculation methods were executed and analyzed to fulfil the requirements for the fatigue analysis of components made of these alloys. In addition, the model parameters can be optimized using these results. Based on the parameters, which define the usability of the investigated lifetime models, e.g. temperature, stress, plastic strain, the limiting combination of the parameters can be described. This graphical representation of the “border line” or limiting combination can also be used for any other materials. The results show that the main lifetime calculation models can only applied in a limited range. This limited range is mainly defined by temperature, strain constraining and their combination.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference10 articles.

1. H. Köberl, G. Winter, M. Riedler and W. Eichlseder: Failure mechanism of pure nickel (Ni 200/201) under thermo-mechanical loading. Key Engineering Materials Vol. 348-349, Trans Tech Publications, Suiss, 2007, pp.793-796, www. scientific. net.

2. M. Riedler: Methodology for the simulation of thermo-mechanically loaded components of engines made from aluminium alloys. PhD Thesis, University of Leoben (2005).

3. H. Köberl, G. Winter and W. Eichlseder: Energy based lifetime calculation for Ni-alloys. Materials Testing, Vol. 51, No. 5, 2009, pp.276-285, www. materialstesting. de.

4. M. Riedler, R. Minichmayr and W. Eichlseder: Methods for the thermo-mechanical fatigue simulation based on energy criteria. Proceedings of the 6th International Conference of Assessment of reliability of materials and structures: problems and solutions, RELMAS 2005, St. Petersburg, 2005 pp.496-503.

5. H. Köberl, G. Winter and W. Eichlseder: Lifetime Calculation of Thermo-Mechanically Loaded Materials (Al, Cu, Ni and Fe Alloys) Based on Empirical Methods. Journal of ASTM International, Selected Technical Papers STP 1526, Vol. 37, Baltimore 2011, pp.589-604.

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