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Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding
Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding
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Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding
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Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding
Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding

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Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding
Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding
Journal Article

Influence of Heat and Vibration Treatment on the Cold Resistance and Structure of ER70-S6 Steel Fabricated by 3D Printing Using Electric Arc Cladding

2023
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Overview
—The influence of heat and vibration treatment on the structure and mechanical properties of experimental specimens prepared from an ER70-S6 welding wire by additive electric arc growth is considered. Based on the results of impact strength tests, the cold resistance of the experimental specimens is estimated. Electron microscopy is used to analyze the microstructure of the material and to calculate the grain size. Heat treatment and vibration treatment are shown to significantly increase the cold resistance of the materials produced by electric arc cladding. Replacement of heat treatment operations is possible by introducing the function of vibration treatment of a weld pool into hybrid machining centers.