Application of the ABA cladding technique to a wire based laser cladding process

IF 1.7 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Laura Budde, Nick Schwarz, Jörg Hermsdorf, Stefan Kaierle, Ludger Overmeyer
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引用次数: 0

Abstract

In this study, the application of the ABA cladding strategy in coaxial wire-based cladding processes is investigated. Individual weld seams (A) are first welded on the substrate and additional weld seams (B) are deposited into the intermediate spaces in the second step. Thereby, two different seam geometries are present in the cladding. Unidirectional AAA and ABA claddings are generated using laser hot-wire cladding and analyzed with respect to the quality criteria height, waviness, degree of dilution, and defects. Three different welding parameter sets are used to consider the effect of the contact angle on the applicability of the ABA cladding strategy. When the same process parameters and seam-to-seam offsets are used for the ABA cladding, as for the AAA cladding, the B weld seams are higher than the A weld seams and an uneven ridged cladding surface is present. Two approaches to solving this problem are considered. The cross-sectional area of the B weld seams is reduced by adjusting the welding speeds or an increase in the seam-to-seam offset. Both measures result in a significant reduction in waviness of 30%–58% compared to the AAA cladding. However, lack of fusion defects occurs more frequently at the deposition regime of the B weld seams. It was, therefore, necessary to adjust the process parameters for weld seam B.
ABA熔覆技术在金属丝基激光熔覆工艺中的应用
在本研究中,研究了ABA包覆策略在同轴线材包覆工艺中的应用。首先将单个焊缝(A)焊接在基板上,并在第二步中将附加焊缝(B)沉积到中间空间中。因此,在包层中存在两种不同的接缝几何形状。使用激光热线熔覆技术生成单向AAA和ABA熔覆层,并根据质量标准高度、波纹度、稀释程度和缺陷进行分析。采用三种不同的焊接参数集来考虑接触角对ABA熔覆策略适用性的影响。当采用相同的工艺参数和焊缝间偏移量进行ABA熔覆时,与AAA熔覆相比,B焊缝高于A焊缝,且熔覆面呈不均匀的脊状。考虑了解决这个问题的两种方法。B焊缝的横截面积可通过调整焊接速度或增加焊缝间的偏移量来减小。与AAA包层相比,这两种方法都能显著降低30%-58%的波浪度。然而,在B焊缝沉积区,缺乏熔合缺陷发生的频率更高。因此,有必要调整焊缝B的工艺参数。
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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