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FIBER LASER WELDING OF COPPER BASED OPEN CELL FOAMS

机译:铜基开放式电池泡沫的光纤激光焊接

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Porous metallic materials with cellular structures are well known to combine many physical and mechanical properties. This mix of different, properties makes these systems very attractive for both structural and functional applications, depending on pore size, methodology of production and material characteristics. Because of their porous structure, unconventional machining and more in general unconventional processing is becoming more and more important nowadays for promoting the industrial applications of such a kind of materials. In this work a study on the fiber laser welding process, performed using a 1 kW continuous wave fiber laser, on Cu based foams is reported. The foams, whose the mean size of the pore is approximately 3.5 mm, were produced by means of infiltration of leachable space holders inside the metal in liquid state. After preliminary welding test in a bead on plate configuration performed only on the surface of the foams, samples in lap joint configuration were realized for evaluating the cross section of the welded bead. The effect of the process speed on the geometrical characteristic features of the joints was studied. The extent of the heat affected zone was evaluated directly by optical microscopy and indirectly by executing micro-hardness test. Then the heat affected zone extension was corrected to the process speed. Besides, electron scanning microscopy, coupled with electron dispersive spectroscopy, was adopted for the compositional analysis of the welded beads. It was shown that the laser joints could be achieved in lap joint configuration, allowing high reflectivity porous alloys with complex structures and average pore size of the order of millimeters to be connected.
机译:具有蜂窝结构的多孔金属材料是公知的结合许多物理和机械性能。不同,这种性质的组合,使这些系统的结构和功能的应用非常有吸引力的,这取决于孔尺寸,生产和材料特性的方法。由于它们的多孔结构的,非常规的机械加工和更一般非常规的处理被用于促进这样的种材料的工业应用中变得越来越重要时下。在这项工作中的光纤激光焊接过程的研究中,使用1千瓦的连续波光纤激光器,在基于铜泡沫报道进行。该泡沫体,其细孔的平均尺寸是大约3.5毫米,是由在液态金属内浸出的空间保持器的浸润来产生。后在上板结构的胎圈初步焊接试验的泡沫体的表面上仅进行,在搭接接头构造样品用于评估焊接珠的横截面分别实现。对关节的几何特征的处理速度的影响进行了研究。热影响区的程度通过光学显微镜和间接通过执行微硬度测试直接评估。然后,热影响区延伸到了处理速度修正。此外,电子扫描显微镜,加上电子色散谱,是为的焊接珠的组成分析采用。结果表明,在激光关节可以在搭接接头结构来实现,从而允许连接具有复杂结构和毫米量级的平均孔尺寸的高反射率的多孔合金。

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