The Effect of Niobium Addition and Pre-Annealing on the Tensile Properties of 52CrMoV4 Spring Steel

Author:

Ozuyagli Arzu12ORCID,Barlas Zafer2,Ozsarac Ugur2,Kurnaz Suleyman Can3

Affiliation:

1. Olgun Celik, Hasan Turek Bulvari, 45030 Manisa, Türkiye

2. Metallurgical and Materials Engineering Department, Faculty of Technology, Sakarya University of Applied Science, 54050 Sakarya, Türkiye

3. Metallurgical and Materials Engineering Department, Faculty of Engineering, Sakarya University, 54050 Sakarya, Türkiye

Abstract

In this study, the effect of niobium addition and a specific preheating process on the microstructure and tensile properties of 52CrMoV4 steel used in leaf springs was investigated. Flat and leaf spring materials were used to accomplish this aim. The flat materials under investigation were kept in a furnace for 90 min at 900 °C. A homogeneous microstructure was aimed for with the use of this pre-annealing heat treatment in addition to the standard process before rolling used to create NbC. Leaf spring production was carried out with flat materials that possessed various Nb contents, with or without pre-heating. Grain size measurement and tensile tests were performed on the flat and leaf springs. Additionally, scanning electron microscopy images were captured from the fractured surfaces after the tensile tests were carried out. The current study highlights the importance of Nb addition as an alloying element and the effect of the selected pre-annealing process in optimizing the grain structure and enhancing the tensile properties of leaf springs. The leaf spring with a Nb ratio of 0.0376 that was pre-annealed exhibited a finer grain structure (G = 11.3), greater tensile properties (YS = 1550 N/mm2 and UTS = 1688.6 N/mm2), and deeper tear valleys and larger dimples, indicating higher energy consumption during fracturing, according to the SEM images produced, in contrast with the other materials studied.

Publisher

MDPI AG

Subject

General Materials Science

Reference30 articles.

1. Study of a parabolic leaf spring by finite element method & design of experiments;Patnaik;Int. J. Mod. Eng. Res.,2012

2. Soner, M., Tanoğlu, M., Güven, N., Karaağaç, M., Akyalı, R., Aksoy, Ö., and Kanpolat, A. (2012). Design and Fatigue Life Comparison of Steel and Composite Leaf Spring, SAE International. SAE Technical Papers.

3. Optimization of mono parabolic leaf spring;Karlus;Int. J. Adv. Eng. Technol.,2014

4. Atakay, O. (2019). Investigation of the Effect of Niobium on Mechanical Properties of Hot Rolled Steel. [Master’s Thesis, Iskenderun Technical University—Institute of Engineering and Sciences]. Available online: https://hdl.handle.net/20.500.12508/1304.

5. Research and Application of Fatigue Properties of Niobium Leaf Spring Materials;Qin;Metall. Eng.,2018

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