Microstructure and Tensile Properties of a Nb–Mo Microalloye
发布时间:2021-04-18 10:54
The transformation behavior, microstructural evolution and mechanical properties were compared in a coldrolled Nb–Mo microalloyed 6.5Mn alloy after intercritical annealing(IA) and quenching and partitioning(Q & P),respectively. The thermodynamic calculation and theoretical analysis were used to determine the optimal heat treatment parameters. The Q & P samples exhibited relatively higher strength with relatively low ductility, mainly due to the hard martensite matrix, which resulted in c...
【文章来源】:Acta Metallurgica Sinica(English Letters). 2017,30(07)EISCICSCD
【文章页数】:10 页
【文章目录】:
1 Introduction
2 Experimental Procedure
2.1 Materials and Its Preparation
2.2 Design of Heat Treatment Processes
2.3 Tensile Testing
2.4 Microstructural Characterization
3 Experimental Results
3.1 Optimization of Process Parameters
3.1.1 Determination of Optimal AT for IA Process
3.1.2 Determination of Optimum QT for Q&P Process Seo et al.
3.2 Evolution of Microstructures
3.2.1 Evolution of Microstructures for Q&P Steels
3.2.2 Evolution of Microstructures for IA Steels
3.3 Mechanical Properties
4 Discussion
4.1 Effect of Heat Treatments
4.2 Effect of Heat Treatments on Mechanical Properties
4.3 Effect of Heat Treatments on Deformation Behavior
5 Conclusions
本文编号:3145352
【文章来源】:Acta Metallurgica Sinica(English Letters). 2017,30(07)EISCICSCD
【文章页数】:10 页
【文章目录】:
1 Introduction
2 Experimental Procedure
2.1 Materials and Its Preparation
2.2 Design of Heat Treatment Processes
2.3 Tensile Testing
2.4 Microstructural Characterization
3 Experimental Results
3.1 Optimization of Process Parameters
3.1.1 Determination of Optimal AT for IA Process
3.1.2 Determination of Optimum QT for Q&P Process Seo et al.
3.2 Evolution of Microstructures
3.2.1 Evolution of Microstructures for Q&P Steels
3.2.2 Evolution of Microstructures for IA Steels
3.3 Mechanical Properties
4 Discussion
4.1 Effect of Heat Treatments
4.2 Effect of Heat Treatments on Mechanical Properties
4.3 Effect of Heat Treatments on Deformation Behavior
5 Conclusions
本文编号:3145352
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