Optimizing Mechanical Properties of a 0.3C-1.5Si-3.5MnQuenched and Partitioned Steel

Author:

Hajy Akbary Farideh1,Santofimia Maria Jesus2,Sietsma Jilt2

Affiliation:

1. Materials Innovation Institute (M2i)

2. Delft University of Technology

Abstract

The Quenching and Partitioning (Q&P) process is known as a promising method for producing steels with superior mechanical properties. Developing Q&P steels with optimized mechanical properties requires well understanding of the relation between their microstructural and mechanical properties. The microstructural evolution during different Q&P processes in a 0.3C-1.5Si-3.5Mn (wt.%) steel was analysed. Mechanical properties of the developed microstructures were measured by using microtensile test. The influence of volume fractions and carbon contents of the phases on the ductility and strength of the microstructures was investigated. Furthermore, the effect of the specimen size on the tensile properties was discussed and a correction procedure was applied to convert the measured microtensile properties to the standard ones. A comparison with the measured mechanical properties of other type of Advanced High Strength Steels (AHSS) shows the improved properties of the Q&P steels.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference7 articles.

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2. E. De Moor, P. J. Gibbs, J. G. Speer, D. K. Matlock, Strategies for Third-Generation Advanced High-Strength Steel Development, Iron & Steel Technol. 7(2010) 133-144.

3. J. G. Speer, F. C. R. Assunção, D. K. Matlock, D. V. Edmonds, The Quenching and Partitioning Process: Background and Recent Progress, Mat. Res. 8 (2005) 417-423.

4. H. Liu, X. Lu, X. Jin, H. Dong, J. Shi, Enhanced Mechanical Properties of a Hot Stamped Advanced High-Strength Steel Treated by Quenching and Partitioning Process, Scripta Mater. 64 (2011)749-752.

5. F. Hajy Akbary, M. J. Santofimia, J. Sietsma. Specimen Size Effects on the Tensile Behavior of Various Steels, 2nd International Conference SSTT-Determination of Mechanical Properties of Materials by Small Punch and Other Miniature Testing Techniques, 2012, Ostrava, Czech Republic.

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