Relationship Among Microstructure and Properties and Heat Treatment Process of Ultra-High Strength X

来源 :Journal of Iron and Steel Research(International) | 被引量 : 0次 | 上传用户:lovemy521
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The variation of heat treatments including directed quenching and tempering off-line after controlled rolling(DQT) and quenching off-line and tempering off-line after controlled rolling(RQT) with microstructure and mechanical properties of a low-carbon microalloyed steel was compared and analyzed.For DQT,the quenched steel was obviously banded microstructure,with increasing tempering temperature,lath martensite coarsened,the cusp carbide precipitated at grain boundaries,the yield strength fluctuated slightly,and the fracture-separation was obvious.The impact toughness was better in the steel tempered at 500 ℃ for 1 h.In RQT,with increasing tempering temperature,lath martensite degenerated,intragranular and intergranular finer precipitations with smaller than 30 nm precipitated and grew up and were distributed dispersedly,the stripe-like carbides were distributed at grain boundaries,and the yield strength and tensile strengthen decreased obviously.The impact toughness of RQT process was much better than that of DQT process,and the comprehensive mechanical properties were better for the steel tempered at 500 ℃ for 1 h of RQT process. The variation of heat treatments including directed quenching and tempering off-line after controlled rolling (DQT) and quenching off-line and tempering off-line after controlled rolling (RQT) with microstructure and mechanical properties of a low-carbon microalloyed steel was compared and analyzed.For DQT, the quenched steel was obviously banded microstructure, with increasing tempering temperature, lath martensite coarsened, the cusp carbide precipitated at grain boundaries, the yield strength fluctuated slightly, and the fracture-separation was obvious. impact toughness was better in the steel tempered at 500 ° C for 1 h. RQT, with increasing tempering temperature, lath martensite degenerated, intragranular and intergranular finer precipitations with smaller than 30 nm precipitated and grew up and were distributed dispersedly, the stripe-like carbides were distributed at grain boundaries, and the yield strength and tensile strength decreased. The impact toughness of RQT process w as much better than that of DQT process, and the comprehensive mechanical properties were better for the steel tempered at 500 ° C for 1 h of RQT process.
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