Effect of Process Parameters on Surface Roughness in Hammer Peening and Deep Rolling

Author:

Steitz Manuel1,Scheil Jan2,Müller Clemens2,Groche Peter1

Affiliation:

1. Technical University Darmstadt

2. Darmstadt University of Technology

Abstract

The challenges in die and mold making industry to increase productivity and reduce costs can be addressed by expanding the automation in the process chain. Conventionally the final surface quality is produced by manual polishing operations. This expensive time-consuming production step can be reduced significantly by using machine hammer peening (MHP) and deep rolling (DR). For both processes the emphasis of each process parameter on the resulting surface topographyis largely unknown. This gap of knowledge about significant and non-significant parameters needs to be closed in order to allow a fast process optimization and more economic use of both methods. Therefore this study focuses on figuring out the statistically secured effect of each process parameter on the attainable surface smoothing on cast iron and tool steel. Based on a fractional factorial test design the results of an experimental parameter study are presented and significant parameters are identified. Using a high-speed camera, it may also be proved why an inclination angle between the hammering direction and surface normal is advantageous with regard to the resulting surface quality. Finally, the results are discussed and advices for an industrial use of MHP and DR are given.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference19 articles.

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2. J. Wied, Oberflächenbehandlung von Umformwerkzeugen durch Festklopfen. Dissertation, TU Darmstadt, Darmstadt, published online, (2011).

3. V. Schulze, Modern mechanical surface treatment, WILEY-VCH Verlag, Weinheim, (2006).

4. P. Groche, M. Steitz, Prozesskettenverkürzung im Werkzeugbau – Integration von Verfahren der maschinellen Oberflächeneinglättung, VDI-Z Integrierte Produktion, Springer VDI Verlag, Düsseldorf, Jahrgang 101, Heft 10 (2011) 655–659.

5. P. Groche, M. Engels, M. Steitz, C. Müller, J. Scheil, M. Heilmeier, Potential of mechanical surface treatment for mould and die production, International Journal of Materials Research, Volume 103, June (2012) 683-689.

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