Effect of tempering temperature on the microstructure and mechanical properties of 600 MPa grade low carbon bainitic steel
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摘要: 利用掃描電鏡(SEM)、透射電鏡(TEM)等實驗方法,研究了不同回火溫度對屈服強度600MPa級Fe-Mn-Nb-B系低碳貝氏體高強鋼組織和性能的影響.結果表明:回火溫度對屈服強度和抗拉強度均有較大影響.各回火溫度下的低碳貝氏體鋼性能與回火前相比,屈服強度均有不同程度的升高,而抗拉強度則均有不同程度的下降;600℃回火時屈服強度比回火前高出105MPa.隨著回火溫度的升高,屈服強度先上升后又略有下降并在600℃時達到最大值,抗拉強度下降明顯,伸長率略有升高,屈強比升高.分析認為:回火前后力學性能的變化主要與回火后有更多彌散的尺寸在20nm以下的新的細小粒子析出以及馬氏體占絕大多數的大塊M/A島的分解和發生位錯多邊形的回復有關.Abstract: The effects of tempering temperature on the microstructure and mechanical properties of 600 MPa grade low carbon bainitic steel belonged to Fe-Mn-Nb-B series were investigated by utilizing scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The results show that tempering temperature has considerable influence on both the yield strength and the tensile strength. The yield strength increases with increasing tempering temperature while the tensile strength has an adverse law. In comparison with the as-received steel, the yield strength of the steel tempered at 600℃ increases 105 MPa. With the increase in tempering temperature, the yield strength increase first and has a slight decline after it reaches the highest point at 600℃, the tensile strength decreases significantly, the elongation increases slightly and the yield ratio increases also. Through analysis it is concluded that the major change of mechanical properties after tempering has a connection with dispersive precipitates with the size of less than 20 nm, the decomposition of large M/A islands in which martensite has a large proportion and the reversion of dislocations and polygon ferrite.
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Key words:
- low carbon bainitic steel /
- tempering temperature /
- precipitation /
- M/A island
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