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Laser Beam Welding of Open-Porous Metallic Foams for Application in Cooling Structures of Combined Cycle Power Plants

机译:开孔金属泡沫激光束焊接在联合循环电厂冷却结构中的应用

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摘要

Within the Collaborative Research Centre 561, "Thermally highly loaded, porous and cooled multilayer systems for combined cycle power plants," open-porous and high-temperature stable Ni-based structures are being developed for the requirements of effusion cooling. A two-dimensional cooling strategy for the walls of combustion chambers, which allows the outflow of the cooling medium over the complete wall area of the combustion chamber, could be realized by an open-porous metallic foam structure. The open-porous metallic foam is produced by the "slip reaction foam sintering" process, a powder metallurgical process. To join several foams to assemble structural elements, laser beam welding has been used. Different joining strategies have been examined to find out the most suitable method to join these foams. In this paper, the process setups, settings of the different strategies, and results of trials (seam geometry and strength tests) are discussed. The need for graded structures to combine the essential permeability and adequate weldability is also shown.
机译:在合作研究中心561内,“用于联合循环发电厂的热负荷高,多孔且冷却的多层系统”正在开发开孔且高温稳定的镍基结构,以满足渗出冷却的需求。可以通过开孔金属泡沫结构实现用于燃烧室壁的二维冷却策略,其允许冷却介质在燃烧室的整个壁区域上流出。开孔金属泡沫是通过“滑动反应泡沫烧结”工艺,粉末冶金工艺生产的。为了连接几种泡沫以组装结构元件,已经使用了激光束焊接。已经研究了不同的连接策略,以找到最合适的方法来连接这些泡沫。在本文中,将讨论过程设置,不同策略的设置以及试验结果(缝几何和强度测试)。还显示了对将基本渗透性和足够的可焊性相结合的分级结构的需求。

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