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NEW APPROACH ON SOLID STATE JOINING OF STAINLESS STEEL TUBE TO TUBE SHEET JOINTS

机译:不锈钢管到管板接头的固态结合的新方法

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Hybrid friction diffusion bonding (HFDB) is a solid-state bonding process first introduced by Helmholtz-Centre Geesthacht, Germany, to join aluminium tube-to-tube sheet joints of coil-wound heat exchangers (CWHE) for liquefaction of natural gas (LNG). This study describes how HFDB was in a first step successfully transferred to create austenitic S32100 single hole tube-to-tube sheet joints. Process parameters are presented and results from subsequent non-destructive bubble leak testing and destructive tensile pull-out testing are discussed. After pull out testing the bonded areas were further investigated using optical microscopy as well as scanning electron microscopy. Leak tight joints were generated due to the formation of a metallic bond close to the planar friction area of the employed tools, and failure in pull-out tests occurred by ductile fracture. The results show that the HFDB approach developed for Al-alloys may well be transferred to steel, and in the future possibly to other high-temperature alloys. It thereby offers an alternative route for joining tube to tube-sheet connections in solid state, with the corresponding advantages, such as no open flames or arc, no spatter and no need for filler material.
机译:混合摩擦扩散粘结(HFDB)是一种由德国Helmholtz-Centre Geesthacht首次引入的固态粘结工艺,用于将盘绕式热交换器(CWHE)的铝管对管板接头连接起来以液化天然气(LNG) )。这项研究描述了如何在第一步中成功地转移HFDB以创建奥氏体S32100单孔管对管薄板接头。介绍了工艺参数,并讨论了随后的非破坏性气泡泄漏测试和破坏性拉伸试验的结果。拔出测试后,使用光学显微镜和扫描电子显微镜进一步研究粘合区域。由于在所用工具的平面摩擦区域附近形成了金属结合,因此产生了紧密的接头,并且由于延性断裂而导致拉拔测试失败。结果表明,为铝合金开发的HFDB方法很可能会转移到钢中,并且将来可能转移到其他高温合金中。因此,它提供了另一种固态连接管与管板连接的途径,具有相应的优点,例如没有明火或电弧,无飞溅且无需填充材料。

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