The Impact of Tempering Temperature on Retained Austenite and Mechanical Properties of 1.2842 Tool Steel
Author:
GÜNERLİ EnderORCID, BAYRAMOĞLU Melih1ORCID, GEREN Necdet1ORCID
Affiliation:
1. ÇUKUROVA ÜNİVERSİTESİ, MÜHENDİSLİK FAKÜLTESİ, MAKİNE MÜHENDİSLİĞİ BÖLÜMÜ
Abstract
This work investigates the impact of tempering temperature on the mechanical properties quenched 1.2842 (O2) cold work tool steel depending on the volume fraction of retained austenite (RA). The tempering temperature significantly influences proportion of RA and the mechanical properties. Therefore, the tempering temperature and the volume fractions of RA in through-hardened tool steels must be optimized to minimize dimensional variations and augment performance in service. In this work, the hardened samples were subjected to tempering process at different tempering temperatures and hardnes, impact and tensile tests were applied to the samples. Then the results obtained from these tests were analyzed and optimum tempering temperature was defined. The findings reveal that low-temperature tempering leads to a robust stabilization of the RA phase and better mechanical properties for the steel investigated.
Publisher
Cukurova Universitesi Muhendislik-Mimarlik Fakultesi Dergisi
Reference18 articles.
1. 1. Heat Treatment of Tool Steels, https://www.thefreelibrary.com/Heat+treatment+of+tool+steels.-a066123648, Access date: Sep. 07 2023. 2. 2. Uchegbulam, I., Abeer, A.S., Nnorom, O., 2019. Heat Treatment of UNS T72305 Tool Steel: Effect on Mechanical and Microstructural Properties. The International Journal of Engineering and Science 8(9), 50-56. 3. 3. Tabatabae, B.A., Ashrafızadeh, F., Hasanlı, A.M., 2011. Influence of Retained Austenite on the Mechanical Properties of Low Carbon Martensitic Stainless Steel Castings. The International Journal of Engineering and Science (ISIJ), 51(3), 471-475. 4. 4. Feng, Y., Jing, C., Lin, T., Wu, Z., Li, Z., Zhao. J., 2023. Effect of Retained Austenite on the Microstructure and Mechanical Properties of Cold-rolled Medium-manganese Q&P Steel. Iron & Steelmaking Processes, Products and Applications, 50(2), 167-173. 5. 5. Saastamoinen, A., Kaijalainen, A., Nyo, T.T., Suikkanen, P., Porter, D., Kömi, J., 2019. Direct-Quenched and Tempered Low-C High-Strength Structural Steel: The Role of Chemical Composition on Microstructure and Mechanical Properties. Materials Science & Engineering: A, 760, 346-358.
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