Friction welding of 42CrMo medium carbon steel and 36Mn2V alloy steel: Effects of forging pressure and post-weld heat treatment on microstructure and mechanical properties

Author:

Lu Tian1,Li Wenya2ORCID,Wang Chuanliu3,Tian Dongzhuang3

Affiliation:

1. CCTEG Xi'an Research Institue (Group) Co., Ltd.

2. Northwestern Polytechnical University

3. CCTEG Xi'an Research Institute (Group) Co., Ltd.

Abstract

Abstract

42CrMo medium carbon steel and 36Mn2V alloy steel were successfully jointed using continuous drive friction welding. The effects of forging pressure and post-weld heat treatment on microstructure and mechanical properties of joints were investigated in detail. Results reveal that with increasing the forging pressure, the tensile and yield strength increase firstly and then decrease. The as-welded joint with the highest yield strength (708 MPa), largest elongation (14.2%), and high impact toughness (57.24 J) were obtained with the 35MPa forging pressure. After post-weld heat treatment, the joint yield strength, elongation, and impact toughness were increased to 798 MPa, 18.1%, and 71.02 J, respectively. The microhardness measurement results indicate that the as-welded joints show higher Vicker hardness than the two base metals. After post-weld heat treatment, the microhardness was decreased owing to martensite elimination. The above findings provide a basis for the implementation of friction welding of dissimilar steels used for drills in the coal-mining industry.

Publisher

Springer Science and Business Media LLC

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