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Image of ANALISIS KEKASARAN PERMUKAAN PADA PROSES FREIS MENGGUNAKAN CAIRAN PEMOTONGAN MINYAK KELAPA YANG DICAMPUR NANOPARTIKEL MoS2

Skripsi

ANALISIS KEKASARAN PERMUKAAN PADA PROSES FREIS MENGGUNAKAN CAIRAN PEMOTONGAN MINYAK KELAPA YANG DICAMPUR NANOPARTIKEL MoS2

Fahrezi, IrgiĀ  - Personal Name;

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Cutting fluid is one of the important factors in the machining process because it determines the quality of machining, that is, surface roughness. This study analyzed the effect of variation in milling machining parameters using coconut oil cutting liquid with 1% mixture of MoS2 nanoparticles with Minimum Quantity Lubrication (MQL) technique. The output parameter is the roughness of the machining surface of AISI 1045 steel. The milling machining parameters that are varied are cutting speed, feeding motion, and axial feeding depth. The L9(33) orthogonal matrix of Taguchi's experimental design, signal-to-noise ratio, and analysis of variance (ANOVA) were used to analyze the impact of these machining parameters. The analysis performed shows the optimal combination of machining parameters to produce the best surface roughness is high cutting speed, low feeding motion, and low feeding depth. The comparison of cutting fluid to surface roughness shows that coconut oil with a mixture of nanoparticles is able to produce good surface roughness.


Availability
Inventory Code Barcode Call Number Location Status
2307001763T99311T993112023Central Library (Referens)Available
Detail Information
Series Title
-
Call Number
T993112023
Publisher
Indralaya : Prodi Teknik Mesin, Fakultas Teknik Universitas Sriwijaya., 2023
Collation
xxvii, 49 hlm.; ilus.; 29 cm
Language
Indonesia
ISBN/ISSN
-
Classification
621.930 7
Content Type
Text
Media Type
unmediated
Carrier Type
-
Edition
-
Subject(s)
Alat Pemotong
Prodi Teknik Mesin
Specific Detail Info
-
Statement of Responsibility
MURZ
Other version/related

No other version available

File Attachment
  • ANALISIS KEKASARAN PERMUKAAN PADA PROSES FREIS MENGGUNAKAN CAIRAN PEMOTONGAN MINYAK KELAPA YANG DICAMPUR NANOPARTIKEL MoS2
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