2009
DOI: 10.3103/s1063457609010079
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Hard “skiving” turning

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Cited by 6 publications
(15 citation statements)
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“…The results of a study on hard turning of highchromium-nickel alloy (hardness of 60-62 HRC) were discussed by Klimenko and Manokhin [39]. As pointed out, surface roughness of R a = 0.07-0.14 μm was achived at feed of 0.05 mm/rev.…”
Section: Hard-gear-manufacturing Operationsmentioning
confidence: 97%
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“…The results of a study on hard turning of highchromium-nickel alloy (hardness of 60-62 HRC) were discussed by Klimenko and Manokhin [39]. As pointed out, surface roughness of R a = 0.07-0.14 μm was achived at feed of 0.05 mm/rev.…”
Section: Hard-gear-manufacturing Operationsmentioning
confidence: 97%
“…1 The property of being hard enough to cut metals even when heated to a dull-red color. Traditionally when cutting tools with polycrystalline superhard materials (PSHM) are used, the cutting feed does not exceed 0.2 mm/rev due to a common requirement of obtaining surfaces with roughness of R a and R z below 1.25 and 5 μm, respectively (Figure 1.11) [39]. Increased turning efficiency is possible by using cutting tools with wiper geometry [40], tools with non-planar (sculptural) rake faces [41], and "skiving" cutting [39].…”
Section: Hard-gear-manufacturing Operationsmentioning
confidence: 99%
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“…Ez annak köszönhető, hogy az él által súrolt forgácsolt felület szimmetriasíkbeli metszete egy erősen nyújtott hiperbola lesz, mivel egy szimmetriatengely körül egy hozzá képest kitérő egyenest forgatunk meg. Többek között Klimenko és Manokhin is megmutatta (Klimenko and Manokhin, 2009), hogy az él terelőszögének növelésével a forgácsoló erő és a passzív erő csökkenthető, míg az előtolás irányú erő növekszik. Ez fontos szempont, hiszen keményesztergálásnál a radiális irányú (passzív) erőkomponens a domináns az alkalmazott negatív homlokszög miatt (Chen, 2000).…”
Section: áBra a Hántoló Esztergálás (Klimenko And Manokhin 2009) éS K...unclassified