Ding Donghong, Pan Zengxi, van Duin Stephen, Li Huijun, Shen Chen
School of Mechanical, Materials, and Mechatronics Engineering, Faculty of Engineering and Information Science, University of Wollongong, Northfield Ave, Keiraville, NSW 2500, Australia.
Materials (Basel). 2016 Aug 3;9(8):652. doi: 10.3390/ma9080652.
Cast nickel aluminum bronze (NAB) alloy is widely used for large engineering components in marine applications due to its excellent mechanical properties and corrosion resistance. Casting porosity, as well as coarse microstructure, however, are accompanied by a decrease in mechanical properties of cast NAB components. Although heat treatment, friction stir processing, and fusion welding were implemented to eliminate porosity, improve mechanical properties, and refine the microstructure of as-cast metal, their applications are limited to either surface modification or component repair. Instead of traditional casting techniques, this study focuses on developing NAB components using recently expanded wire arc additive manufacturing (WAAM). Consumable welding wire is melted and deposited layer-by-layer on substrates producing near-net shaped NAB components. Additively-manufactured NAB components without post-processing are fully dense, and exhibit fine microstructure, as well as comparable mechanical properties, to as-cast NAB alloy. The effects of heat input from the welding process and post-weld-heat-treatment (PWHT) are shown to give uniform NAB alloys with superior mechanical properties revealing potential marine applications of the WAAM technique in NAB production.
铸造镍铝青铜(NAB)合金因其优异的机械性能和耐腐蚀性而广泛应用于海洋工程中的大型部件。然而,铸造孔隙率以及粗大的微观结构会导致铸造NAB部件的机械性能下降。尽管采用了热处理、搅拌摩擦加工和熔焊来消除孔隙率、改善机械性能并细化铸态金属的微观结构,但它们的应用仅限于表面改性或部件修复。本研究不是采用传统铸造技术,而是专注于利用最近发展起来的电弧增材制造(WAAM)来制造NAB部件。消耗性焊丝在基板上逐层熔化和沉积,从而制造出近净形的NAB部件。未经后处理的增材制造NAB部件完全致密,具有精细的微观结构,并且与铸态NAB合金具有相当的机械性能。焊接过程中的热输入和焊后热处理(PWHT)的效果表明,可获得具有优异机械性能的均匀NAB合金,这揭示了WAAM技术在NAB生产中的潜在海洋应用前景。