Overlap Ratio in Wire- and Powder-Based Laser Metal Deposition of H11 + Nb for Hot Forging Dies

Author:

Teli Mahesh1,Klocke Fritz1,Arntz Kristian1,Winands Kai2,Klingbeil Nils2,Arrizubieta Jon Iñaki3

Affiliation:

1. Fraunhofer Institute for Production Technology (IPT)

2. Fraunhofer Institute for Production Technology IPT

3. University of the Basque Country UPV/EHU

Abstract

AISI H11 tool steel is a complex tool steel alloy used to manufacture hot forging dies. These dies however have a limited life, which depends upon the working conditions, the tool design, the heat treatment, and the quality of tool steels. In this paper, a novel wire-and powder-based laser metal deposition (WP-LMD) process was investigated to deposit H11 wire and niobium (Nb) powder simultaneously and develop a coating on existing forging dies for enhancing their life. The main aim was the development of a novel WP-LMD process, and consequently a new H11 tool steel with improved toughness and hardness. The developed WP-LMD process was later implemented to build a multilayer block made of the modified H11 tool steel. The overlap ratio was optimized in both, horizontal and vertical, directions, and were found to be 30% and 20% respectively in order to achieve a fully dense coating and avoid pores and unmelted Nb particles. The potential of the WP-LMD can be used to fabricate an outer layer of the modified H11 tool steel with improved toughness and hardness, which ultimately enhances the life of hot forging.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference21 articles.

1. Kim Y and Choi C 2009 International Journal of Precision Engineering and Manufacturing 10(3) pp.105-113.

2. Souki I, Delagnes D and Lours P 2011 Procedia Engineering 10 pp.631-637.

3. Suchmann P and Niznanska J 2015 Journal of Achievements in Materials and Manufacturing Engineering 73(1) pp.21-26.

4. Gronostajski Z et al. 2016 Materials Science & Engineering A 657 pp.147-160.

5. Muhič M et al. 2010 Strojniški vestnik- Journal of Mechanical Engineering 56(6) pp.351-356.

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