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首页> 外文期刊>Journal of Materials Processing Technology >Laser beam welding of aluminum to Al-base coated high-strength steel 22MnB5
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Laser beam welding of aluminum to Al-base coated high-strength steel 22MnB5

机译:铝与铝基涂层高强度钢22MnB5的激光束焊接

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The microstructure of aluminum-Al-coated steel laser beam welding joints was analyzed with respect to the welding energy. Quantitative and qualitative analysis of the welding microstructure were used to measure the weld width as well as the thickness of the resulting intermetallic layer at the 22MnB5/aluminum interface in relation to the welding parameters. Weldability of Al-coated steel could be improved by removing brittle coating particles and oxides on the steel surface by sandblasting. Adhesion of aluminum filler material to the 22MnB5 steel sheet could be enhanced by inductive preheating of the steel surface during laser welding. This produced welded 22MnB5/aluminum joints that exhibited a linear mechanical resistance of 220 MPa and which failed away from the brittle intermetallic layer on the aluminum side under a tensile load. The shear strength of the intermetallic layer on the 22MnB5/aluminum interface was evaluated to 74 +/- 21 MPa. (C) 2014 Elsevier B.V. All rights reserved.
机译:从焊接能量的角度分析了铝铝钢激光束焊接接头的显微组织。使用焊接组织的定量和定性分析来测量焊接宽度以及22MnB5 /铝界面处所得金属间化合物层的厚度与焊接参数的关系。通过喷砂去除钢表面的脆性涂层颗粒和氧化物,可以提高涂铝钢的可焊接性。通过在激光焊接过程中对钢表面进行感应预热,可以增强铝填充材料对22MnB5钢板的附着力。这产生了焊接的22MnB5 /铝接头,该接头具有220 MPa的线性机械抵抗力,并且在拉伸载荷作用下远离铝侧的脆性金属间化合物层。在22MnB5 /铝界面上的金属间层的剪切强度被评估为74 +/- 21MPa。 (C)2014 Elsevier B.V.保留所有权利。

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