Effect of quenching-tempering processes on the microstructure and properties of X80 pipe fittings steel
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摘要: 采用掃描電子顯微鏡(SEM)、電子背散射衍射分析技術(EBSD)和透射電子顯微鏡(TEM)等實驗手段,研究了不同淬火-回火熱處理工藝制度對X80管件鋼組織性能的影響.結果表明:一次930℃淬火后,隨著回火溫度的升高,實驗鋼屈服強度先升高后降低,在630℃達到最大值588MPa;抗拉強度隨回火溫度升高持續下降,680℃時降至630MPa.二次兩相區淬火,經630℃回火后,X80管件鋼有最佳的綜合力學性能,-50℃沖擊韌性顯著提高,Ak達到210J.這是由于二次淬火溫度在860℃兩相區時,組織中奧氏體晶粒大幅細化,經630℃回火后,細晶馬氏體組織中出現位錯亞結構的回復軟化、板條邊界鈍化和塊狀M-A組元分解產生的析出強化機制綜合作用的結果.Abstract: The effects of quenching-tempering heat treatment processes on the microstructure and properties of X80 pipe fittings steel were studied by scanning electron microscopy(SEM), electron backscatter diffraction(EBSD), transmission electron microscopy(TEM) and other experimental methods.The results show that after the first quenching at 930 ℃, the yield strength first increases and then declines with the tempering temperature increasing, reaching the maximum 588 MPa at 630 ℃, but the tensile strength decreases gradually and reaches the lowest 630 MPa at 680 ℃.After the second two-phase quenching and the tempering at 630 ℃, X80 pipe fittings steel has the optimum comprehensive mechanical properties, while its impact strength significantly reaches 210 J at -50 ℃.This can be attributed to the fine-grain austenite microstructure after the secondary quenching at 860 ℃, the combined effect of recovery and softening of the dislocation sub-structure, the blunting mechanism along strip boundaries, and the precipitation strengthening from decomposition of massive M-A after tempering at 630 ℃.
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Key words:
- alloy steel /
- quenching /
- tempering /
- microstructures /
- mechanical properties
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