Microstructure and mechanical properties of low carbon bainite steel treated by quenching and tempering
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摘要: 研究了C-Mn-Mo-Cu-Nb-Ti-B系低碳微合金鋼915℃淬火和490~640℃回火的調質工藝對鋼的組織及力學性能的影響.用掃描電鏡和透射電鏡對實驗鋼的組織、析出物形態和分布以及斷口形貌進行觀察,采用X射線衍射儀分析鋼中殘余奧氏體的體積分數.結果表明:調質后,實驗鋼獲得貝氏體、少量馬氏體及殘余奧氏體復相組織,貝氏體板條寬度只有250 nm,殘余奧氏體的體積分數隨著回火溫度的升高而降低,經淬火與520℃回火后殘余奧氏體的體積分數為2.1%.調質后析出物的數量激增,6~15 nm的析出物占70%以上.實驗鋼經過915℃淬火與520℃回火后,其屈服強度達到915 MPa,抗拉強度990 MPa,-40℃沖擊功為95 J.細小的析出物及窄的板條提高了鋼的強度.板條間有殘余奧氏體存在,改善了實驗鋼的韌性.Abstract: The effects of quenching at 915℃ and tempering at 490~640℃ on the microstructure and mechanical properties of C-Mn-Mo-Cu-Nb-Ti-B based low-carbon microalloyed steel were investigated.The microstructure,the shape and distribution of precipitates,and the fractograph of the steel were observed by scanning electron microscopy(SEM) and transmission electron microscopy(TEM).The volume fraction of retained austenite was measured by X-ray diffractometry(XRD).The results show that a multiphase microstructure with bainite,martensite and retained austenite is achieved after quenching and tempering.The bainite lath is 250 nm in width.The volume fraction of retained austenite decreases with the tempering temperature rising,and it is 2.1% after tempering at 520℃.The quantity of precipitates increases sharply after heat treatment,and the proportion of precipitates in a size range of 6 to 15 nm is above 70%.After quenching at 915℃ and tempering at 520℃,the test steel has a yield strength of 915 MPa,a tensile strength of 990 MPa and a-40℃ impact energy of 95 J.Fine precipitates and narrow lath bainite can enhance the strength,but the retained austenite existing between bainite laths can significantly improve the toughness.
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Key words:
- high strength steel /
- heat treatment /
- retained austenite /
- precipitates /
- microstructure /
- mechanical properties
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