1. Yildirim HC (2013) Design aspects of high strength steel welded structures improved by high frequency mechanical impact (HFMI) treatment. Dissertation, Aalto University Helsinki
2. Ummenhofer T, Telljohann G, Dannemeyer S, Weich I, Strohbacg H, Eslami H, Kern A-K, Pinkernell D, Smida M, Rahlf U, Senk B, Herion S, Hrabowsky J, Rack S (2011) Abschlussbericht Forschungsprogramm REFRESH: Lebensdauerverlängerung Bestehender und neuer geschweißter Stahlkonstruktionen (in German), FOSTA – Research Association For Steel Application Association In Germany, Düsseldorf
3. Ummenhofer T, Herion S, Puthli R, Weidner P (2011) Effects of post weld treatment and loading condition on the fatigue life of ultra high strength steels. Proc Int Offshore Polar Eng Conf 8:269–275
4. Weich I (2009) Ermüdungsverhalten mechanisch nachbehandelter Schweißverbindungen in Abhängigkeit des Randschichtzustandes, Fatigue behavior of mechanical post welded treated welds depending on the edge layer condition (in German). Dissertation, Technical Univercity of Braunschweig
5. Schubnell J, Pontner P, Wimpory RC, Farajian M, Schulze V (2020) The influence of work hardening and residual stresses on the fatigue behavior of high frequency mechanical impact treated surface layers. Int J Fatigue 134:105450. https://doi.org/10.1016/j.ijfatigue.2019.105450