首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Economical joining of tubular steel towers for wind turbines employing non-vacuum electron beam welding for high-strength steels in comparison with submerged arc welding
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Economical joining of tubular steel towers for wind turbines employing non-vacuum electron beam welding for high-strength steels in comparison with submerged arc welding

机译:与埋弧焊相比,采用非真空电子束焊接技术对高强度钢进行风力涡轮机管状钢塔的经济连接

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摘要

Owing to restricted energy resources and the worldwide ambitions to reduce CO_2 emissions, renewable energy sources, such as wind energy, are gaining economical interest and promise great growth potential. This is closely connected with the increase of plant unit sizes. The wall thickness of the tower construction is rising accordingly and leads to increasing costs for the joining technology. The rising number of weld passes for submerged arc welding (SAW) leads to rising process times and high filler material consumption. The employment of non-vacuum electron beam welding (NVEBW) can significantly reduce the number of passes, the welding time, and the filler consumption. A substantial aspect of the control of the welding process is the formation of solidification cracks. Formation mechanisms and preventions methods such as preheating, alloying, and full penetration welding will be presented and experimentally backed up. The subsequent application of the SAW and NVEBW processes will be compared to standard multi-pass SAW for an exemplary weld of 30 mm thick high-strength steel. An additional aim of current research is the overall reduction of the wall thickness of wind turbine towers applying high-strength steels. Here, it is of chief concern to preserve the advantages of the material.
机译:由于有限的能源资源以及全球范围内减少CO_2排放的雄心,风能等可再生能源正在获得经济利益,并有望实现巨大的增长潜力。这与工厂单位规模的增加密切相关。塔结构的壁厚相应地增加并且导致连接技术的成本增加。埋弧焊(SAW)焊道数量的增加导致工艺时间的增加和填充材料消耗的增加。使用非真空电子束焊接(NVEBW)可以显着减少焊道数量,焊接时间和填料消耗。控制焊接过程的一个重要方面是凝固裂纹的形成。将介绍形成机理和预防方法,例如预热,合金化和全熔透焊接,并进行实验备份。 SAW和NVEBW工艺的后续应用将与标准的多道SAW进行比较,以用于30 mm厚高强度钢的示例性焊接。当前研究的另一个目标是整体减少使用高强度钢的风力涡轮机塔架的壁厚。在这里,最重要的是要保留材料的优点。

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