Heat Treatment Studies on 50CrV4 Spring Steel

Author:

Anil Kumar V.1,Karthikeyan M.K.1,Gupta R.K.1,Ramkumar P.1,Uday Prakash M.1

Affiliation:

1. Vikram Sarabhai Space Centre

Abstract

50CrV4 spring steel is a tough, shock resisting, shallow hardening chromium vanadium steel having high fatigue and impact resistance in the heat treated condition. It is used extensively in gears, pinions, springs, shafts, axles, pins, bolts, etc., which require high modulus of resilience. The alloy was realised through conventional melt route of electric arc furnace (EAF) followed by ESR. The application of the alloy is limited to a section thickness of 15mm [1]. Hence obtaining optimum mechanical properties becomes a challenging task. In this study, the hardening as well as tempering operations were limited to 15mm thickness. The samples from the alloy were subjected to hardening at 860°C for 1.25 h. and oil quenching to room temperature followed by tempering at four different temperatures of 250, 300, 370 & 450°C for 3 h. each with oil quenching to room temperature. It was found that the alloy exhibited good combination of strength and ductility when tempered at 450°C. Microstructural study revealed the presence of fine tempered lath martensite along with the presence of a very small amount of delta ferrite along prior austenitic grain boundaries.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference6 articles.

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3. Woldman's Engineering alloys, John. P. Frick (ed. ), ASM International, 01-Jan-2000 - Technology & Engineering.

4. W.F. Brown Jr., Aerospace Structural Materials handbook, code 1224, Metals and Ceramics information centre, (1989).

5. A.M. Hall Sr., Introduction to today's ultra high strength structural steels, STP 498, American Society for Testing of Materials, (1971).

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