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Article

A Study on the Characteristics of 304 Stainless Steel According to the Water Temperature Changes in Underwater Laser Beam Machining

1
Department of Smart Manufacturing Engineering, Changwon National University, 20, Changwondaehak-ro, Uichang-gu, Changwon-si 51140, Republic of Korea
2
Mechatronics Research Center, Changwon National University, Changwon 51140, Republic of Korea
*
Authors to whom correspondence should be addressed.
Materials 2023, 16(23), 7463; https://doi.org/10.3390/ma16237463
Submission received: 31 October 2023 / Revised: 23 November 2023 / Accepted: 29 November 2023 / Published: 30 November 2023

Abstract

In underwater laser beam machining (ULBM), water provides a cooling effect by reducing the influence of the laser heat source, which makes ULBM more suitable for marking, cutting, and postprocessing than laser beam machining (LBM). Because the laser heat source not only affects the substrate temperature, but also heats the water, this study analyzes how the cooling effect occurs when water is heated. In this study, the heat-transformed zones in ULBM and heated underwater laser beam machining (HULBM) were improved by approximately 33% and 24%, respectively, compared to LBM at 400 W. In addition, the heat-affected zones in ULBM and HULBM improved by approximately 15% and 9%, respectively, compared to LBM. The hardness of ULBM and HULBM was higher than that of LBM. Based on these results, it was confirmed that water can reduce the effect of the laser heat source and improve the mechanical properties. Experiments will be conducted on the underwater laser beam machining of various substrates, such as Inconel718 and Ti-6Al-4V, in a future study. In addition, experiments will be conducted on the underwater laser beam machining of various substrates using a cooling system that can lower the temperature of water.
Keywords: underwater laser beam machining; heating system; heat-affected zone; mechanical property; 304 stainless steel underwater laser beam machining; heating system; heat-affected zone; mechanical property; 304 stainless steel

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MDPI and ACS Style

Lee, J.Y.; Kim, D.-H.; Cho, Y.T.; Lee, C.M. A Study on the Characteristics of 304 Stainless Steel According to the Water Temperature Changes in Underwater Laser Beam Machining. Materials 2023, 16, 7463. https://doi.org/10.3390/ma16237463

AMA Style

Lee JY, Kim D-H, Cho YT, Lee CM. A Study on the Characteristics of 304 Stainless Steel According to the Water Temperature Changes in Underwater Laser Beam Machining. Materials. 2023; 16(23):7463. https://doi.org/10.3390/ma16237463

Chicago/Turabian Style

Lee, Jun Yeon, Dong-Hyeon Kim, Young Tae Cho, and Choon Man Lee. 2023. "A Study on the Characteristics of 304 Stainless Steel According to the Water Temperature Changes in Underwater Laser Beam Machining" Materials 16, no. 23: 7463. https://doi.org/10.3390/ma16237463

APA Style

Lee, J. Y., Kim, D.-H., Cho, Y. T., & Lee, C. M. (2023). A Study on the Characteristics of 304 Stainless Steel According to the Water Temperature Changes in Underwater Laser Beam Machining. Materials, 16(23), 7463. https://doi.org/10.3390/ma16237463

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