2015
DOI: 10.1016/j.apsusc.2015.07.132
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Effect of micro/nano-scale textures on anti-adhesive wear properties of WC/Co-based TiAlN coated tools in AISI 316 austenitic stainless steel cutting

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Cited by 77 publications
(27 citation statements)
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“…6a and Fig. h, the wear scar under N 2 condition is rough and underwent adhesive wear mechanism [25]. With the increase in RH, the wear surface become smoother and exhibited an evident furrow trace with different depths and widths, indicating that the wear mechanism was abrasive wear.…”
Section: Wear Surface Analysismentioning
confidence: 88%
“…6a and Fig. h, the wear scar under N 2 condition is rough and underwent adhesive wear mechanism [25]. With the increase in RH, the wear surface become smoother and exhibited an evident furrow trace with different depths and widths, indicating that the wear mechanism was abrasive wear.…”
Section: Wear Surface Analysismentioning
confidence: 88%
“…width is small (40μm), the micro-texture provides a supremely fabulous contact interface to reduce the friction and temperature. Research [19] shows that micro nanoscale texture is more effective than micro-scale texture because it minifies the contact region between the toolchip interfaces. Yet as the micro-texture width increase (40~80μm), the voids in the micro-texture increase, and the severer " derivative cutting" cause the rise of tool temperature.…”
Section: Effect Of Microstructure Size On Cutting Temperaturementioning
confidence: 99%
“…One of the successful applications of laser surface texturing is in cutting tools. Surface textures with micrometer scales on the tool surface have been reported to improve tribological characteristics [32,33]. The nanoscale textures are also the ideal candidate for improving the properties of cutting tools.…”
Section: Reduction Of Friction Of Metals By Ultrashort Pulsed Laser-imentioning
confidence: 99%
“…Compared to other techniques, laser structuring provides significant advantages including fast machining time, environment friendly, precise control of the geometric features of the patterns, and so on. Especially, the ultrashort pulsed laser with pulse width ranging from picosecond to femtosecond is one of the most promising ways to achieve micromachining in the field of tribological applications [19][20][21][22][23][24][25][26][27][28][29][30][31][32][33][34][35][36][37], which is owing to its ultrashort pulse width and ultrahigh peak power that can process almost all materials. Moreover, ultrashort pulsed lasers are expected to minimize the melt ejection and heat-affected effects for surface texturing in tribological applications.…”
Section: Introductionmentioning
confidence: 99%
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