Effect of Laser Beam Overlap Rate on Mechanical Properties of Aluminum Alloy Arc Welding with Laser Peening

Author:

Jeon Jae-Ook1ORCID,Yun Ye-Sol1ORCID,Song Moo-Keun2,Kim Pyeong-Soo3,Kim Jong-Do1ORCID

Affiliation:

1. Division of Marine System Engineering, Korea Maritime & Ocean University, Busan 49112, Republic of Korea

2. Korea Research Institute of Decommissioning, Gyeongju City 38120, Republic of Korea

3. Hanjo Co., Ltd., Busan 606033, Republic of Korea

Abstract

This study aims to investigate the effect of the laser beam overlap rate on the mechanical properties of Al3003 aluminum alloy arc weldment with laser peening. To determine the optimal laser beam overlap rate for laser peening of the weldment, peening experiments were conducted on bead-welded and butt-welded specimens with varying overlap rates, and the effect of the beam overlap rate was analyzed. As the overlap rate increased, the residual stress changed from tensile to compressive, with the highest level of compressive residual stress at the overlap rate of 75%. Laser peening was performed on the aluminum weldment of the prototype, applying the optimal peening conditions identified earlier. As a result of comparing the residual stress, hardness, and tensile strength of the weld before and after laser peening, it was found that the tensile residual stress in the weldment was improved to a compressive residual stress of about −50 MPa or more. The hardness and tensile strength of the weld increased after peening, and the mechanical properties were also improved.

Funder

Ministry of Education and the National Research Foundation of Korea

Industrial Innovation Infrastructure Establishment Project of the Ministry of Trade, Industry and Energy, “Advancement of Manufacturing Equipment Base for E-mobility using Laser Technology”

Publisher

MDPI AG

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