Time-efficient Prediction of the Surface Layer State after Deep Rolling using Similarity Mechanics Approach

Author:

Trauth Daniel,Klocke Fritz,Mattfeld Patrick,Klink Andreas

Publisher

Elsevier BV

Subject

General Medicine

Reference11 articles.

1. Nalla, R., Altenberger, I., Noster, U., Liu, G., Scholtes, B., Ritchie, R., 2003. On the influence of mechanical surface treat- ments - deep rolling and laser shock peening - on the fatigue be- havior of Ti-6Al-4V at ambient and elevated temperatures. Mate- rials Science and Engineering: p. 216–230.

2. Krull, P., Nitschke-Pagel, T., Wohlfahrt, H., 1999. Influence of shot peening and high pressure water peening on near surface mi- crostructure of 316 Ti stainless steel. In: Brebbia, C., Kenny, J.M.: Surface treatment IV. Computer methods and experimental measurements, p. 291–309.

3. Wagner, L., 1999. Mechanical surface treatments on titanium, aluminum and magnesium alloys. Materials Science and Engi- neering: A 263(2):p. 210–216.

4. Mader, S., 2006. Festwalzen von Fan- und Verdichterschaufeln. PhD thesis RWTH Aachen University.

5. Prevey, P.S., Shepard, M.J., 2001. The Effect of Low Plasticity Burnishing (LPB) on the HCF Performance and FOD Resistance of Ti-6AI-4V. Proc. 6th National Turbine Engine HCF Confer- ence, Jacksonville, FL, March 5-8.

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