2016
DOI: 10.1007/s11595-016-1386-8
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Plasma surface Cu alloyed layer as a lubricant on stainless steel sheet: Wear characteristics and on-job performance in incremental forming

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Cited by 8 publications
(4 citation statements)
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“…Single element alloys W, Mo, Al, Ti, Nb, Zr, Cu, Ta, V, Pt, Co, Au, Ni, Cr (11)(12)(13)(14), etc. ; Multi-element alloys: W-Mo(2), Ni-Cr(15), Cr-Nb, Cr-Mo(16), Al-Cr( 17), W-Mo-Ti, Co-W-Mo, Al-Cr-Nb, Ni-Cr-Mo-Cu, Ni-Cr-Mo-Nb (18,19), Zr/ZrC(20), etc.…”
Section: Summary Of Experimental Resultsmentioning
confidence: 99%
“…Single element alloys W, Mo, Al, Ti, Nb, Zr, Cu, Ta, V, Pt, Co, Au, Ni, Cr (11)(12)(13)(14), etc. ; Multi-element alloys: W-Mo(2), Ni-Cr(15), Cr-Nb, Cr-Mo(16), Al-Cr( 17), W-Mo-Ti, Co-W-Mo, Al-Cr-Nb, Ni-Cr-Mo-Cu, Ni-Cr-Mo-Nb (18,19), Zr/ZrC(20), etc.…”
Section: Summary Of Experimental Resultsmentioning
confidence: 99%
“…The XPS results are shown in Figure 12, and the main components of the grinding chips of both Mn-Cu and Fe-Zn materials are oxide species. The main components of the grinding chips in the Mn-Cu material are CuO and Cu 2 O (Figure 12c), which reduce the friction coefficient due to the lubricating properties of CuO [43], thus explaining the aforementioned experimental phenomena. The main component of the grinding chips in the Fe-Zn material is FeO, which has less influence on the friction interface due to the low content of wear debris and accumulation in the braided grooves.…”
Section: Morphologies and Wear Mechanismmentioning
confidence: 88%
“…They [17] also found that the formed truncated conical geometry has different surface roughness along the depth direction. Wu et al [18] used copper-coated stainless steel sheet in ISF. It was found that the surface quality was good, and the copper layer can perform a good self-lubricating effect.…”
Section: Introductionmentioning
confidence: 99%