Effects of Quenching Media and Heat Transfer Rate on the Hardness and Microstructure of Low-Carbon Steel
- Authors
-
-
Francis O. BOROKINNI
Author
-
Olarewaju T. OGINNI
Author
-
Ridwan O. RAJI
Author
-
Kolawole ALONGE
Author
-
- Keywords:
- Martensite formation, cooling rate, characterization, optimizing heat treatment, quenching media.
- Abstract
-
This paper examines the impact of heat transfer during quenching on the hardness and mechanical properties of low carbon steel, specifically evaluating how various cooling media affect the microstructure and mechanical behavior of the material. Steel samples underwent heat treatment involving austenitizing at about 800 °C for 30 minutes, followed by quenching in water, engine oil, and air cooling (normalizing) to achieve uniform temperature and complete phase transformation. Mechanical characterization of impact, tensile and microstructural examination using optical microscopy test were carried out. The energy absorption values for the samples increased with different quenching methods with control (18.15 Joules), air-cooled (21.22 Joules), water-quenched (23.82 Joules), and highest for engine oil quenched (25.19 Joules). Hardness also improved, with air-cooled at 243.2 HV, water-quenched at 278.4 HV, and engine oil at 258.9 HV, all exceeding the control's 230.0 HV. Tensile strengths were 583.87 MPa for control, 589.03 MPa for air-cooled, 530.3 MPa for water-quenched, and 525.1 MPa for engine oil-quenched. The study reveals that cooling rates in quenching media affect microstructure and hardness, with water-quenching leading to the highest hardness due to increased martensite. Oil-quenching results in lower hardness but better impact energy, while air-cooled samples show a ferrite-pearlite structure. The findings highlight the trade-offs between hardness, tensile strength, and ductility, emphasizing the need to choose appropriate quenching media for optimal performance in engineering applications.
- References
- Downloads
- Published
- 09-05-2026
- Section
- Articles
- License
-
Copyright (c) 2026 FUDMA Journal of Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
How to Cite
Similar Articles
- Michael R. ADU, Blessing O. UMUKORO, Design and Construction of a 1.5 kVA Pure Sine Wave Inverter for Office Use , FUDMA Journal of Engineering and Technology: Vol. 2 No. 1 (2026): June 2026
- Bala ABDULLAHI, Bala G. ABDURRAHMAN, Yusuf ALHASAN, Saidu B. ABUBAKAR, Bashir I. KUNYA, Raya K. ALDADAH, Saad MAHMOUD, Ahmed REZK, Effects of Truncating the Height of Compound Parabolic Collector on its Geometry, Optical and Thermal Performances , FUDMA Journal of Engineering and Technology: Vol. 2 No. 1 (2026): June 2026
- Koliya LAAYE, Solomon O. OGUCHE, Ibrahim I. JIDDA, Abdullahi A. ADAMU, Economic Viability of Waste-to-Energy: Pathways for Sustainable Power Generation in Jalingo, Taraba State, Nigeria , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
- Mohammed U. GARBA, Usman B. ABDULLAHI, Hayatudden S. BARAYAIS, Aisha B. FARUQ, Suleiman IDRIS, Abubakar M. MUHAMMAD, Abubakar S. MOHAMMED, Treatment of Gold Mining Wastewater: A Review of Current Technologies and Future Perspectives , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
- Chukwuemeka S. IBEH, Abubakre O. KAMARDEEN, Saka A. ABDULKAREEM, Aliyu A. ABDULLAHI, Experimental Study on the Characterisation and Thermo-Physical Properties of Graphene-Agro Based Hybrid Nanofluids , FUDMA Journal of Engineering and Technology: Vol. 2 No. 1 (2026): June 2026
- Cyril OCHERI, Victor S. AIGBODION, Esther O. AMEH, Ihebuchuwu C. EZEAKU, Chibuikem A. OKAFOR, Uchenna C. AMAZUE, Eddy R. OMONIGHO, Electrochemical Analysis of Azadirachta indica Leaves as a Corrosion inhibitor on Mild Steel in 1 M H2SO4 , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
- Ruth R. ADELAJA, Rhoda I. ADELAJA, Henry OTOBRISE, Adefope OWOJORI, Babatunde ADEBO, Investigation of Indoor Radiation Levels within Lead City University’s Academic Buildings , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
- Olusiji A. ADEYANJU, Joseph O. OLAIDE, Machine Learning Models for Predicting Flow Rate for Niger Delta Oil Wells , FUDMA Journal of Engineering and Technology: Vol. 2 No. 1 (2026): June 2026
- Rhoda I. ADELAJA, Ruth R. ADELAJA, Henry OTOBRISE, Adefope OWOJORI, Babatunde ADEBO, Assessment of Outdoor Radiation Exposure in an Academic Environment: A Case Study of Lead City University , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
- Shehu ABDULKADIR, Dangora N. DAUDA, Aliyu A. ADAMU, Badaru M. SANI, Rilwan ABUBAKAR, Timothy A. TIMOTHY, Uchechukwu M. AGBOM, Abubakar S. ABUBAKAR, Development and Performance Evaluation of a Modified Active Evaporative Cooling System for Postharvest Preservation of Selected Vegetables , FUDMA Journal of Engineering and Technology: Vol. 2 No. 1 (2026): June 2026
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- Kazeem A. BELLO, Adeniyi O. ADESINA, Lukman A. OPEYEMI, Solomon O. UVIASE, Francis O. BOROKINNI, Friday ONUH, Tunde O. OGUNDANA, Adebayo I. OLUMOROTI, Developments and Applications of Additive Manufacturing in the Automotive Industry , FUDMA Journal of Engineering and Technology: Vol. 2 No. 1 (2026): June 2026
- Olarewaju T. OGINNI, An Overview of Unmanned Aerial Vehicles Technologies for Office Use and Services Delivery , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
- Olawale J. OLALUYI, Johnson O. ADEOGO, Aduragbemi F. OJO, Olarewaju T. OGINNI, Design and Construction of Transistor Based Water Level Indicator Tank with Overflow Alarm , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
- Olawale J. OLALUYI, Johnson O. ADEOGO, Adeniyi O. AJIBOYE, Mayowa O. ORESELU, Olarewaju T. OGINNI, Application of Machine Learning for Enhancing Fake Logo Detection , FUDMA Journal of Engineering and Technology: Vol. 1 No. 2 (2025): December 2025
