Comparison of melting efficiency between blue, green, and IR lasers in pure copper welding

IF 1.7 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Laser Applications Pub Date : 2023-09-18 DOI:10.2351/7.0001177
Keisuke Takenaka, Yuji Sato, Shumpei Fujio, Masahiro Tsukamoto
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Abstract

Pure copper parts are commonly used in many industrial products because of their low thermal resistance and high electrical conductivity. However, connecting high-quality and high-efficiency copper materials remains a challenge. This is because pure copper has low absorption of near-infrared light, making it difficult to weld stably with a near-infrared laser. Visible light lasers should realize high-efficiency laser welding of pure copper. However, there are few reports comparing the laser wavelength dependence of welding efficiency for pure copper. In this study, bead-on-plate welding was performed on pure copper plates of 2 mm thickness using a 1.5 kW blue diode laser (445 nm), a 16 kW IR disk laser (1030 nm), and a 3 kW green disk laser (515 nm). Bead-on-plate welding of pure copper was performed in the thermal conduction mode or the keyhole mode by varying the laser spot diameter and power, and the amount of melting was measured from cross-sectional observations. As a result, compared to the IR disk laser, blue and green lasers showed higher melting efficiency in both the thermal conduction and keyhole modes, and the melting behavior was more stable. In thermal conduction mode welding, the melting efficiency was 0.2% with the IR disk laser and 0.7% with the blue diode laser. In keyhole mode welding, the melting efficiency with the blue diode laser or green disk laser was about 7%, which is equivalent to that with the IR disk laser with 2.5 times the output power.
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纯铜焊接中蓝色、绿色和红外激光熔化效率的比较
纯铜零件因其热阻低、导电性高,在许多工业产品中普遍使用。然而,连接高质量和高效率的铜材料仍然是一个挑战。这是因为纯铜对近红外光的吸收很低,因此很难用近红外激光稳定焊接。可见激光应实现纯铜的高效激光焊接。然而,比较激光波长对纯铜焊接效率的依赖关系的报道很少。在本研究中,采用1.5 kW蓝色二极管激光器(445 nm)、16 kW红外圆盘激光器(1030 nm)和3 kW绿色圆盘激光器(515 nm)对2mm厚度的纯铜板进行了板上焊。通过改变激光光斑直径和功率,分别在热传导模式和锁孔模式下对纯铜进行了珠片焊接,并通过截面观察测量了熔量。结果表明,与红外光盘激光器相比,蓝色和绿色激光器在热传导和锁孔模式下均表现出更高的熔化效率,且熔化行为更稳定。在热传导模式焊接中,红外圆盘激光的熔化效率为0.2%,蓝色二极管激光的熔化效率为0.7%。在锁孔模式焊接中,蓝色二极管激光器或绿色圆盘激光器的熔化效率约为7%,与输出功率为2.5倍的红外圆盘激光器的熔化效率相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.60
自引率
9.50%
发文量
125
审稿时长
>12 weeks
期刊介绍: The Journal of Laser Applications (JLA) is the scientific platform of the Laser Institute of America (LIA) and is published in cooperation with AIP Publishing. The high-quality articles cover a broad range from fundamental and applied research and development to industrial applications. Therefore, JLA is a reflection of the state-of-R&D in photonic production, sensing and measurement as well as Laser safety. The following international and well known first-class scientists serve as allocated Editors in 9 new categories: High Precision Materials Processing with Ultrafast Lasers Laser Additive Manufacturing High Power Materials Processing with High Brightness Lasers Emerging Applications of Laser Technologies in High-performance/Multi-function Materials and Structures Surface Modification Lasers in Nanomanufacturing / Nanophotonics & Thin Film Technology Spectroscopy / Imaging / Diagnostics / Measurements Laser Systems and Markets Medical Applications & Safety Thermal Transportation Nanomaterials and Nanoprocessing Laser applications in Microelectronics.
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