Yayın: Investigating the Tribological Performance of Laser Powder Bed Fusion-Manufactured Maraging Steel Through Advanced Postprocessing Techniques
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Tarih
Danışman
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Bölüm / Program
Dergi Başlığı
Dergi ISSN
Cilt Başlığı
Yayıncı
ASME
DOI
10.1115/1.4069695
Türü
Özet
Laser powder bed fusion (LPBF) facilitates the production of high-strength maraging steel components with intricate geometries; however, inherent surface roughness (similar to 6.125 mu m) and suboptimal tribological performance restrict their application in wear-critical contexts. This study introduces an innovative approach that synergistically combines sandblasting and vibratory polishing to enhance surface integrity and wear behavior. Postprocessing resulted in a 54% reduction in surface roughness (R-a = 2.809 mu m) and a 4.1% increase in microhardness (481 HV). Tribological evaluations under dry, machine oil (MO), and soybean oil (SO) lubrication demonstrated that vibratory polishing decreased wear by 76.5% (263.02 x 10(-9) mm(3)/Nm) and friction by 62.6% (mu = 0.247) under dry-sliding conditions. MO lubrication on polished surfaces achieved near-hydrodynamic conditions, resulting in ultra-low wear (4.87 x 10(-9) mm(3)/Nm) and friction (mu = 0.036). Notably, soybean oil, a sustainable bio-lubricant, exhibited performance comparable to MO (wear factor: 4.17 x 10(-9) mm(3)/Nm), underscoring its potential for eco-tribological systems. Field emission scanning electron microscopy (FE-SEM) analysis confirmed a transition from severe abrasive wear (as-built) to mild adhesive wear (postprocessed), directly correlating surface topography with lubrication regime dominance. This research establishes vibratory polishing as a pivotal enabler for hydrodynamic lubrication in LPBF components, thereby unlocking their potential in aerospace, automotive, and precision tooling industries where wear resistance is critical for operational longevity.
Tanım
Dergi veya Seri
JOURNAL OF TRIBOLOGY-TRANSACTIONS OF THE ASME
ISSN
0742-4787
ISBN
Haklar
Anahtar Kelimeler
laser powder bed fusion (LPBF) , maraging steel , additive manufacturing , sandblasting , vibratory polishing , surface roughness , tribological properties , wear resistance , postprocessing techniques , field emission scanning electron microscopy (FE-SEM) , lubricants , sliding , surface properties and characterization , surface roughness and asperities , surface treatments , tribological systems , wear mechanisms , Engineering