Finite element modelling of coverage effects during shot peening of IN718

Author:

Zimmermann Marc1,Schulze Volker2,Hoffmeister Jürgen1

Affiliation:

1. 1 Institut für Werkstoffkunde I, Karlsruhe Institute of Technology, Germany

2. 2 Institut fur Produktionstechnik, Karlsruhe Institute of Technology, Germany

Abstract

AbstractCurrent 3D shot peening simulation models proposed in literature do not take into account coverage as a process parameter influencing the residual state after shot peening. In this study a classic approach, using an ordered dimple pattern, and a new approach, using a stochastic dimple pattern were tested to describe the correlation between coverage, the surface topography and the residual stress state. Model verification was conducted based on X-ray and confocal white light microscopy measurements on shot peened test specimens. The test material was age hardened IN718. Simulations showed that the dimple pattern and the impact order of the shots can have a strong influence on the calculated macroscopic residual stress state. The stochastic approach enabled a realistic prediction of the surface topography and the residual stress state for arbitrary values of coverage while the classic approach strongly underestimated the number of shot impacts needed to achieve a certain value of coverage.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

Reference16 articles.

1. J. Camett: Shot peening coverage – the real deal. The Shot Peener, 21, 8–14, 2007.

2. Three-dimensional finite-element procedures for shot peeening residual stress filed prediction

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