Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steel

This dataset provides the effect of cooling rate using nano-fluid quenchant. The nanofluid consists of 0.1, 0.3, and 0.5 gram of nano-sized carbon particles in 100 ml of distilled water. Pure distilled water was also used as a comparison control. The particle was produced by using planetary ball-mil...

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Main Authors: Ramzul Irham Riza, Kholqillah Ardhian Ilman
Format: Article
Language:English
Published: Elsevier 2023-02-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340922010708
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author Ramzul Irham Riza
Kholqillah Ardhian Ilman
author_facet Ramzul Irham Riza
Kholqillah Ardhian Ilman
author_sort Ramzul Irham Riza
collection DOAJ
description This dataset provides the effect of cooling rate using nano-fluid quenchant. The nanofluid consists of 0.1, 0.3, and 0.5 gram of nano-sized carbon particles in 100 ml of distilled water. Pure distilled water was also used as a comparison control. The particle was produced by using planetary ball-mill at 500 rpm for 15 hours. Field-Emission Scanning Microscope (FE-SEM) and Energy Dispersive X-Ray (EDX) were also used to confirm the size, shape, and purity of the nanoparticles. These nanofluids were then applied to quench annealed S45C carbon steel samples. The samples were connected to a thermocouple with a temperature data logger to observe the cooling rate of the nano-fluid quenchant. The quenched samples were tested to get the information on the hardness of S45C carbon steel.
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spelling doaj.art-a5e93792da994b52b8fb8f9a44baf8242023-02-01T04:26:36ZengElsevierData in Brief2352-34092023-02-0146108867Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steelRamzul Irham Riza0Kholqillah Ardhian Ilman1Department of Mechanical Engineering, Faculty of Engineering, Universitas Muhammadiyah Surakarta, IndonesiaCorresponding author.; Department of Mechanical Engineering, Faculty of Engineering, Universitas Muhammadiyah Surakarta, IndonesiaThis dataset provides the effect of cooling rate using nano-fluid quenchant. The nanofluid consists of 0.1, 0.3, and 0.5 gram of nano-sized carbon particles in 100 ml of distilled water. Pure distilled water was also used as a comparison control. The particle was produced by using planetary ball-mill at 500 rpm for 15 hours. Field-Emission Scanning Microscope (FE-SEM) and Energy Dispersive X-Ray (EDX) were also used to confirm the size, shape, and purity of the nanoparticles. These nanofluids were then applied to quench annealed S45C carbon steel samples. The samples were connected to a thermocouple with a temperature data logger to observe the cooling rate of the nano-fluid quenchant. The quenched samples were tested to get the information on the hardness of S45C carbon steel.http://www.sciencedirect.com/science/article/pii/S2352340922010708NanoparticleNanofluidHeat treatmentQuenchingThermal conductivityCooling rate
spellingShingle Ramzul Irham Riza
Kholqillah Ardhian Ilman
Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steel
Data in Brief
Nanoparticle
Nanofluid
Heat treatment
Quenching
Thermal conductivity
Cooling rate
title Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steel
title_full Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steel
title_fullStr Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steel
title_full_unstemmed Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steel
title_short Data on the cooling rate using nano carbon-fluid quenching medium and its effect on the hardness of S45C steel
title_sort data on the cooling rate using nano carbon fluid quenching medium and its effect on the hardness of s45c steel
topic Nanoparticle
Nanofluid
Heat treatment
Quenching
Thermal conductivity
Cooling rate
url http://www.sciencedirect.com/science/article/pii/S2352340922010708
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