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Comparison of Cu, Ti and Ta interlayer explosively fabricated aluminum to stainless steel transition joints for cryogenic pressurized hydrogen storage

机译:低温加压储氢的Cu,Ti和Ta夹层爆炸性制造的铝到不锈钢过渡接头的比较

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Fabrication of a bimetallic joint to facilitate a material transition from a 6061-T651 aluminum pressure vessel liner to stainless steel tubing in cryogenic pressure vessels is explored using three different dissimilar metal interlayers with an explosive welding (EXW) process. Due to difficulties in directly EXW joining aluminum (Al) 6061 to 304 stainless steel, interlayers are used to prevent interaction of the aluminum and stainless steel, thus minimizing brittle intermetallic phase formation. Titanium (Ti), copper (Cu), and tantalum (Ta) were selected as the dissimilar metal interlayer materials; each having advantages and disadvantages. Titanium is a commonly used interlayer for this joint, but can microcrack during EXW if the bonding parameters are not correct. Copper has the advantage that it is compatible with hydrogen, but is also known to form brittle intermetallics with aluminum. Tantalum is ductile and bonds well to both Al and stainless steel, and is a high temperature metal that does well to prevent interdiffusion and intermetallic phase formation. However Ta is the most expensive metal of the three. Results of the characterization of the three interlayer bonds showed that Ti produced the highest strength joints, Ta produced the most ductile joints, and Cu produced a joint that failed with low ductility at the Al/Cu interface. Based on these results, the Cu-interlayer joint is not recommended for this application, while the Ti and Ta interlayer bonds both appear to have sufficient strength and ductility for the intended use.
机译:探索了一种双金属接头的制造方法,以促进材料从6061-T651铝制压力容器内衬过渡到低温压力容器中的不锈钢管,并使用三种不同的异种金属夹层通过爆炸焊接(EXW)工艺进行了研究。由于难以直接用EXW将铝(Al)6061连接到304不锈钢,因此使用中间层来防止铝和不锈钢之间的相互作用,从而最大程度地减少了脆性金属间相的形成。选择钛(Ti),铜(Cu)和钽(Ta)作为异种金属夹层材料;每个都有优点和缺点。钛是该接头的常用中间层,但如果粘结参数不正确,则在EXW期间可能会发生微裂纹。铜具有与氢相容的优点,但也已知与铝形成易碎的金属间化合物。钽具有延展性,并且可以很好地与铝和不锈钢结合,并且是一种高温金属,可以很好地防止相互扩散和金属间相的形成。然而,钽是三种材料中最昂贵的金属。三个层间键的表征结果表明,Ti产生了最高强度的接头,Ta产生了最易延展的接头,而Cu产生了在Al / Cu界面断裂且延展性低的接头。基于这些结果,不建议在此应用中使用Cu-中间层接头,而Ti和Ta中间层键对于预期用途均具有足够的强度和延展性。

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