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Effect of Heat Input on Porosity Defects in a Fiber Laser Welded Socket-Joint Made of Powder Metallurgy Molybdenum Alloy

机译:热量输入对粉末冶金钼合金制成的光纤激光焊接承窝接头中气孔缺陷的影响

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摘要

Porosity defects are still a challenging issue in the fusion welding of molybdenum and its alloys due to the pre-existing interior defects associated with the powder metallurgy process. Fiber laser welding of end plug and cladding tube made of nanostructured high-strength molybdenum (NS-Mo) alloy was performed in this work with an emphasis on the role of welding heat input. The distribution and morphology of porosity defects in the welded joints were examined by computed tomography (CT) and scanning electron microscopy (SEM). Preliminary results showed that laser welding of NS-Mo under low heat input significantly reduced the porosity defects in the fusion zone. The results of computed tomography (CT) showed that when the welding heat input decreased from 3600 J/cm (i.e., 1200 W, 0.2 m/min) to 250 J/cm (i.e., 2500 W, 6 m/min), the porosity ratio of the NS-Mo joints declined from 10.7% to 2.1%. Notable porosity defects under high heat input were related to the instability of the keyhole, expansion and the merging of bubbles in the molten pool, among which the instability of the keyhole played the dominant role. The porous defects at low heat input were generated as bubbles released from the powder metallurgy base metal (BM) did not have enough time to overflow and escape.
机译:由于与粉末冶金工艺相关的内部缺陷,在钼及其合金的熔焊中,孔隙率缺陷仍然是一个具有挑战性的问题。在这项工作中,对端塞和由纳米结构高强度钼(NS-Mo)合金制成的包层管进行了光纤激光焊接,重点是焊接热输入的作用。用计算机断层扫描(CT)和扫描电子显微镜(SEM)检查了焊接接头中气孔缺陷的分布和形态。初步结果表明,在低热量输入下进行NS-Mo激光焊接可显着减少融合区的孔隙缺陷。计算机断层扫描(CT)结果表明,当焊接热输入从3600 J / cm(即1200 W,0.2 m / min)降低到250 J / cm(即2500 W,6 m / min)时,焊缝的热输入量降低。 NS-Mo接头的孔隙率从10.7%降至2.1%。高热量输入下明显的孔隙缺陷与锁孔的不稳定性,熔池中气泡的膨胀和合并有关,其中锁孔的不稳定性起主要作用。低热量输入时会产生多孔缺陷,因为从粉末冶金母材(BM)释放的气泡没有足够的时间溢出和逸出。

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