Results 121 to 130 of about 4,399 (264)
Categorised as a directed energy deposition process, wire arc additive manufacturing (WAAM) is a promising technology for fabricating large-scale structures and components across various industries.
Xiao Fan Zhao +2 more
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In this study, a hybrid additive manufacturing (AM) process that combines interlayer friction stir processing (FSP) with wire arc additive manufacturing (WAAM) is proposed to address the problems of high porosity, coarse grains, and low mechanical ...
Li Liu +6 more
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This literature review provides an in-depth exploration of the research conducted on residual stresses (RS) in Wire Arc Additive Manufacturing (WAAM) products, particularly focusing on how process parameters influence the phenomenon.
Fakada Dabalo Gurmesa +3 more
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This study investigates the introduction of ultrasonic impact treatment (UIT) during the wire arc additive manufacturing process to refine the microstructure and enhance the properties of 18Ni-300 maraging steel components.
Zhen Su +6 more
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Review of regulation means in wire arc additive manufacturing of aluminum alloy
Aluminum alloy possesses extensive applications, and wire arc additive manufacturing (WAAM) has emerged as a rapid method for producing large structural parts, leading to significant advancements in aluminum alloy WAAM technology.
Bojin QI, Linwei CAI
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Nickel aluminum bronze (NAB) is widely used in marine applications for its corrosion resistance and mechanical properties. Wire Arc Additive Manufacturing (WAAM) offers a cost-effective method for producing large-scale metal components, though research ...
Xiaoyu Cai +4 more
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SS 321 is a potential structural alloy for elevated temperature applications. In this work, austenitic stainless steel 321 (SS 321) was successfully fabricated via wire arc additive manufacturing (WAAM).
A. Rajesh Kannan +7 more
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