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JOINING TUBE TO TUBE SHEET FOR COIL WOUND HEAT EXCHANGERS BY HYBRID FRICTION DIFFUSION BONDING

机译:通过混合摩擦扩散结合将管子连接到管片式换热器

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Coil-wound heat exchangers (CWHE) for low temperature applications such as the liquefaction of natural gas (LNG) are often made of aluminium alloys. The fabrication of these aluminium coil-wound heat exchangers holds several challenges, one of which is joining the tubes to the tube sheet. For this specific task, conventional joining technologies such as laser beam welding (LBW) or tungsten inert gas (TIG) welding cannot be easily performed in fully-mechanised mode or are not cost-effective. A joint project between the Helmholtz-Zentrum Geesthacht (HZG) and LINDE Engineering aims at the development of a new solid state joining process, Hybrid Friction Diffusion Bonding (HFDB), to fabricate tube-to-tube-sheet connections for aluminium coil-wound heat exchangers. In the present study, the HFDB process has been developed to industrial maturity and the quality of the joints has been demonstrated by gas leak tightness tests and tensile pull-out tests. The joints meet the requirements for industrial application. Furthermore, the thermal field development in the weld area and the applied process forces have been monitored and correlated to process parameters. The microstructure of the joint has been investigated, and dynamic recrystallization is assumed to be the primary grain refinement mechanism in the thermomechanically affected zone.
机译:用于低温应用(例如天然气(LNG)的液化)的绕卷式热交换器(CWHE)通常由铝合金制成。这些铝制绕线式热交换器的制造面临若干挑战,其中之一是将管子与管板连接起来。对于此特定任务,传统的连接技术(例如激光束焊接(LBW)或钨极惰性气体(TIG)焊接)无法轻松地以完全机械化的方式进行或不具有成本效益。亥姆霍兹-申特鲁姆艺术学院(HZG)和LINDE Engineering之间的一项联合项目旨在开发一种新的固态接合工艺,即混合摩擦扩散粘结(HFDB),以制造用于铝线圈绕制的管对管板连接热交换器。在本研究中,HFDB工艺已发展到工业成熟,并且接头的质量已通过气体密封性测试和拉伸拉拔测试得到了证明。接头符合工业应用要求。此外,已经监视了焊接区域中的热场发展和所施加的过程力,并将其与过程参数相关联。研究了接头的微观结构,并假定动态再结晶是热机械影响区的主要晶粒细化机制。

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