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- W4281925849 abstract "The effect of silicon content (~2–6 wt%) on the wear behavior of a series of stainless steels is investigated using ball-on-disc wear test. The fractions of different phases and their deformation behavior considerably influence the wear behavior. The enhanced wear resistance of the steels with increased Si content is attributed to the improved hardness, increased fraction of ferrite phase, better strain hardening response, and grain refinement. Moreover, lenticular deformation of the austenite in the subsurface of worn-out zone parallel to the motion of the counter body (Si 3 N 4 ball) serves cushioning effect by filling the cracks and preventing its growth during wear. This mainly attributes to the highest wear resistance in ~6 wt% Si-containing stainless steel. • Wear resistance of Si-containing stainless steel improves significantly with increasing silicon content. • Improvement in wear resistance is primarily due to increased hardness of the γ-austenite phase with increasing silicon content, higher volume fraction of δ-ferrite phase, better strain hardening response, and grain refinement. • For the sample containing ~6 wt% Si (dual phase alloy), cushioning effect induced by γ-islands also contributed to the enhanced wear characteristics. • Worn surface analysis indicates that adhesive, delamination, and abrasive wear govern the wear behavior of these alloys." @default.
- W4281925849 created "2022-06-13" @default.
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- W4281925849 date "2022-09-01" @default.
- W4281925849 modified "2023-10-16" @default.
- W4281925849 title "Cushioning effect of austenite in silicon stainless steels (SiSS) leading to improved wear resistance" @default.
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- W4281925849 doi "https://doi.org/10.1016/j.triboint.2022.107678" @default.
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