Zykova Anna, Savchenko Nikolai, Nikolaeva Aleksandra, Panfilov Aleksander, Vorontsov Andrey, Semenchuk Vyacheslav, Gurianov Denis, Kolubaev Evgeny, Tarasov Sergei
Institute of Strength Physics and Materials Science of the Siberian Branch of the RAS, pr. Academicheskiy, 2/4, Tomsk 634055, Russia.
Materials (Basel). 2024 May 14;17(10):2325. doi: 10.3390/ma17102325.
Defect-free thin-walled samples were built using wire arc additive manufacturing (WAAM) combined with the "coldArc" deposition technique by feeding a Ti-6Al-4V welding wire and using two deposition strategies, namely with and without the welding torch weaving. The microstructures formed in these samples were examined in relation to mechanical characteristics. The arc torch weaving at 1 Hz allowed us to interfere with the epitaxial growth of the β-Ti columnar grains and, thus, obtain them a lower aspect ratio. Upon cooling, the α/α'+β structure was formed inside the former β-Ti grains, and this structure proved to be more uniform as compared to that of the samples built without the weaving. The subtransus quenching of the samples in water did not have any effect on the structure and properties of samples built with the arc torch weaving, whereas a more uniform grain structure was formed in the sample built without weaving. Quenching resulted also in a reduction in the relative elongation by 30% in both cases.
采用电弧增材制造(WAAM)结合“冷弧”沉积技术,通过送入Ti-6Al-4V焊丝并使用两种沉积策略(即有和没有焊炬摆动)制造出无缺陷薄壁样品。研究了这些样品中形成的微观结构与力学特性的关系。1Hz的焊炬摆动使我们能够干扰β-Ti柱状晶粒的外延生长,从而获得较低的长径比。冷却后,在原来的β-Ti晶粒内部形成了α/α'+β结构,与没有摆动制造的样品相比,这种结构更加均匀。对有焊炬摆动制造的样品进行亚相变点水冷对其结构和性能没有任何影响,而没有摆动制造的样品形成了更均匀的晶粒结构。两种情况下,淬火还导致相对伸长率降低30%。