The effect of cutting speed and cutting tool geometry on machinability properties of nickel-base Inconel 718 super alloys

The effects of cutting speed and cutting tool geometry on cutting forces are investigated in this study. For this purpose, nickel-base super alloy, Inconel 718, is machined with dry cutting conditions by using digital controlled computer lathe with ceramic cutting tools in two different geometries and three different material qualities. Metal removing process is carried out for four different cutting speeds (150 m/min, 200 m/min, 250 m/min, and 300 m/min), while a cutting depth of 2 mm and a feed rate of 0.20 mm/rev are kept constant. As a result of the experiments, the lowest main cutting force, which depends on tool geometry, is obtained as 672 N with KYON 2100 SNGN 120712 ceramic tool and the maximum cutting force is determined as 1346 N with the ceramic cutting tool having KYON 4300 RNGN 120700 geometry. Depending on the cutting speed, the lowest main cutting force is recorded as 812 N at 250 m/min while the highest main cutting force is recorded as 955 N at 150 m/min. Plastic deformation, flank edge wear, notch and build-up edge are determined in high cutting speeds. © 2006 Elsevier Ltd. All rights reserved.

Dergi Adı Materials and Design
Dergi Cilt Bilgisi 28
Dergi Sayısı 4
Sayfalar 1334 - 1338
Yayın Yılı 2007
Eser Adı
[dc.title]
The effect of cutting speed and cutting tool geometry on machinability properties of nickel-base Inconel 718 super alloys
Yazar
[dc.contributor.author]
Nalbant, Muammer
Yazar
[dc.contributor.author]
Altın, Abdullah
Yazar
[dc.contributor.author]
Gökkaya, Hasan
Yayın Yılı
[dc.date.issued]
2007
Yayıncı
[dc.publisher]
Elsevier Ltd
Yayın Türü
[dc.type]
article
Özet
[dc.description.abstract]
The effects of cutting speed and cutting tool geometry on cutting forces are investigated in this study. For this purpose, nickel-base super alloy, Inconel 718, is machined with dry cutting conditions by using digital controlled computer lathe with ceramic cutting tools in two different geometries and three different material qualities. Metal removing process is carried out for four different cutting speeds (150 m/min, 200 m/min, 250 m/min, and 300 m/min), while a cutting depth of 2 mm and a feed rate of 0.20 mm/rev are kept constant. As a result of the experiments, the lowest main cutting force, which depends on tool geometry, is obtained as 672 N with KYON 2100 SNGN 120712 ceramic tool and the maximum cutting force is determined as 1346 N with the ceramic cutting tool having KYON 4300 RNGN 120700 geometry. Depending on the cutting speed, the lowest main cutting force is recorded as 812 N at 250 m/min while the highest main cutting force is recorded as 955 N at 150 m/min. Plastic deformation, flank edge wear, notch and build-up edge are determined in high cutting speeds. © 2006 Elsevier Ltd. All rights reserved.
Kayıt Giriş Tarihi
[dc.date.accessioned]
2019-12-23
Açık Erişim Tarihi
[dc.date.available]
2019-12-23
Yayın Dili
[dc.language.iso]
eng
Künye
[dc.identifier.citation]
Nalbant, M., Altın, A. ve Gökkaya, H. (2007). The effect of cutting speed and cutting tool geometry on machinability properties of nickel-base Inconel 718 super alloys. Materials & Design, 28(4), 1334-1338. doi:10.1016/j.matdes.2005.12.008
Haklar
[dc.rights]
info:eu-repo/semantics/closedAccess
ISSN
[dc.identifier.issn]
0261-3069
İlk Sayfa Sayısı
[dc.identifier.startpage]
1334
Son Sayfa Sayısı
[dc.identifier.endpage]
1338
Dergi Adı
[dc.relation.journal]
Materials and Design
Dergi Sayısı
[dc.identifier.issue]
4
Dergi Cilt Bilgisi
[dc.identifier.volume]
28
Tek Biçim Adres
[dc.identifier.uri]
https://dx.doi.org/10.1016/j.matdes.2005.12.008
Tek Biçim Adres
[dc.identifier.uri]
https://hdl.handle.net/20.500.12628/7921
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12
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1
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Son Erişim Tarihi
02 Mayıs 2023 11:30
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https://hdl.handle.net/20.500.12628/7921">
cutting different ceramic geometry speeds determined lowest recorded deformation Elsevier depends obtained rights reserved experiments build-up Plastic highest Depending 120712 120700 having maximum result constant machined computer controlled digital conditions geometries Inconel nickel-base purpose investigated
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