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Electron beam and Nd-YAG laser welding of niobium-1 zirconium and molybdenum-44.5 rhenium thin select material

机译:电子束和Nd-YAG激光焊接铌-1%锆和钼-44.5%铼薄选择材料

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A development study has been completed on autogenous electron beam and Nd-YAG laser welding of niobium-1% zirconium (Nb-1% Zr) and molybdenum-44.5% rhenium (Mo-44.5% Re) thin sheet material. Specimens 0.5 mm thick were welded using both processes in a butt joint configuration. Mechanical tests were performed on welded specimens and their ultimate tensile strengths and percent elongation were determined. Metallographic cross-sections of sample welds showed that electron beam welding resulted in larger grains and an increased heat affected zone compared to laser welded samples. The Nd-YAG laser process yielded a more refined grain structure in the weld compared to the electron beam process due most likely to solidification mode and weld heat input differences. These preliminary studies show that the Nb-1% Zr material can be successfully welded using either welding process. The Mo-44.5% Re material was only successfully welded using the electron beam process. The Nd-YAG laser welded Mo-44.5% Re samples yielded some surface and sub-surface cracks and displayed brittle behavior during mechanical testing of the welds. Additional work will be required to determine the feasibility of obtaining optimum laser welds on the Mo-44.5% Re material.
机译:在铌-1%锆(Nb-1%Zr)和钼-44.5%铼(MO-44.5%RE)薄薄片材的铌-1%锆(NB-1%Zr)和Nd-YAG激光焊接上完成了开发研究。使用两种工艺在对接接头构造中焊接0.5mm厚的标本。在焊接样品上进行机械测试,测定它们的最终拉伸强度和伸长百分比。样品焊缝的金相横截面表明,与激光焊接样品相比,电子束焊接导致较大的谷物和增加的热影响区。与最有可能凝固模式和焊接热输入差异的电子束过程相比,ND-YAG激光过程在焊缝中产生更精细的晶粒结构。这些初步研究表明,Nb-1%Zr材料可以使用焊接工艺成功焊接。 MO-44.5%RE材料仅使用电子束过程成功焊接。 ND-YAG激光焊接MO-44.5%RE样品在焊缝的机械测试期间产生一些表面和亚表面裂缝并显示出脆性行为。需要额外的工作来确定在MO-44.5%RE材料上获得最佳激光焊缝的可行性。

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