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Development of ceramic backing for friction stir welding and processing

机译:开发用于摩擦搅拌焊接和加工的陶瓷背衬

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摘要

Usually, a workpiece is deformed during friction stir welding due to high applied loads. Consequently, fully and consolidated friction stir-welded joints as well as tool life time can be affected promoting unscheduled manufacturing stops, which favour decreasing the welding productivity. Furthermore, the workforce is dislocated to not predicted maintenance steps. This work proposes the development of a special ceramic backing to joining and processing material using FSW technologies. Four ceramic deposits were tested over a steel plate, which allowed selecting those with less porosity and, thus, better strength. This backing allowed us to obtain full penetration welds for duplex stainless steels, to high forces during engagement for high-strength low-alloy steels and to obtain consolidated aluminium-steel dissimilar joints. For the last one, there was not adherence of the soft material in the workpiece. In addition, the ceramic backing allowed us to confine the heat and plasticized metal, as well as develop established welding parameters.
机译:通常,在摩擦搅拌焊接过程中,工件会由于高负载而变形。因此,会影响搅拌的完全和牢固的摩擦焊接接头以及工具的使用寿命,从而导致计划外的制造停工,这有利于降低焊接生产率。此外,劳动力转移到了无法预计的维护步骤。这项工作建议开发一种特殊的陶瓷背衬,以使用FSW技术连接和加工材料。在钢板上测试了四个陶瓷沉积物,从而可以选择孔隙率较小,强度更高的那些。这种支持使我们能够获得双相不锈钢的全熔透焊缝,高强度低合金钢在接合过程中承受的高力,以及获得固结的铝钢异种接头。对于最后一个,在工件上没有粘附软材料。此外,陶瓷背衬使我们能够限制热量和塑化金属,并开发既定的焊接参数。

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