Effect of segregations on mechanical properties and crack propagation in spring steel

Journal Title: Frattura ed Integrità Strutturale - Year 2015, Vol 9, Issue 34

Abstract

 Considerable efforts have been made over the last decades to improve performance of spring steels, which would increase the service time of springs and also allow vehicles weight reduction. There are different possibilities of improving properties of spring steels, from modifying the chemical composition of steels to optimizing the deformation process and changing the heat treatment parameters. Another way of improving steel properties is through refining the microstructure and reducing amount of inclusions. Therefore, the focus of the current investigation was to determine the effect of more uniform and cleaner microstructure obtained through electro-slag remelting (ESR) of steel on the mechanical and dynamic properties of spring steel, with special focus on the resistance to fatigue crack propagation. Effect of the microstructure refinement was evaluated in terms of tensile strength, elongation, fracture and impact toughness, and fatigue resistance under bending and tensile loading. After the mechanical tests the fracture surfaces of samples were analyzed using scanning electron microscope (SEM) and the influence of microstructure properties on the crack propagation and crack propagation resistance was studied. Investigation was performed on hot rolled, soft annealed and vacuum heat treated 51CrV4 spring steel produced by conventional continuous casting and compared with steel additional refined through ESR. Results shows that elimination of segregations and microstructure refinement using additional ESR process gives some improvement in terms of better repeatability and reduced scattering, but on the other hand it has negative effect on crack propagation resistance and fatigue properties of the spring steel.

Authors and Affiliations

B. Žužek, M. Sedlaček

Keywords

Related Articles

Analysis of the influence of the anisotropy induced by cold rolling on duplex and super-austenitic stainless steels  

This report contains the results obtained from the mechanical characterization tests carried out on two different stainless steel (duplex 6%Ni, 22%Cr and super-austenitic 31%Ni, 28%Cr) used for the manufacturing of pipes...

 Models of initiation fatigue crack paths proposed by Macha

 Professor E. Macha devoted his academic life to solving the problems connected with random multiaxial fatigue in components of machines and structures. In his studies he formulated stress, strain and energy crite...

 Advanced techniques for estimation of the tensile fracture toughness of adhesive joints

 Adhesive bonding has become more efficient in the last few decades due to the adhesives developments, granting higher strength and ductility. As a result, adhesives are being increasingly used in industries such a...

 Analysis of the causes of failure in 5Cr-1Mo pipes mounted in a preheating furnace

 The oxidation resistance of iron-based alloys depends on the formation of thin protective films consisting of reaction products between the alloys and the ambient atmosphere. The high corrosion resistance of Fe-Cr-...

 Static assessment of brittle/ductile notched materials: an engineering approach based on the Theory of Critical Distances

 Engineering components often contain notches, keyways or other stress concentration features. These features raise the stress state in the vicinity of their apex which can lead to unexpected failure of the compone...

Download PDF file
  • EP ID EP106603
  • DOI 10.3221/IGF-ESIS.34.17
  • Views 81
  • Downloads 0

How To Cite

B. Žužek, M. Sedlaček (2015).  Effect of segregations on mechanical properties and crack propagation in spring steel. Frattura ed Integrità Strutturale, 9(34), 160-168. https://europub.co.uk/articles/-A-106603