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- W2521313743 abstract "Abstract A 0.3C-1.6Si-3.5Mn (wt%) steel was subjected to different QP secondary martensite refers to martensite formed during quenching from 400 °C to room temperature. The yield strength of each constituent phase was determined by applying physical models to the data obtained from detailed microstructural characterization. The yield strength (uncertainty of 5%) of the Q&P microstructures was calculated by using a composite law to account for the contribution of each constituent phase. The dependence of the yield strength on the microstructural features of the Q&P microstructures was revealed by using the approach developed in this work. For example, initial martensite (which has a high yield strength and is the dominant phase in the microstructures) had the greatest effect on the yield strength of the Q&P microstructures. Furthermore, the phase fraction and dislocation density of this phase increased with decreasing quenching temperature, leading to an increase in the yield strength of the material." @default.
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- W2521313743 date "2016-11-01" @default.
- W2521313743 modified "2023-09-29" @default.
- W2521313743 title "Analysis of the mechanical behavior of a 0.3C-1.6Si-3.5Mn(wt%) quenching and partitioning steel" @default.
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- W2521313743 doi "https://doi.org/10.1016/j.msea.2016.09.087" @default.
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