Effect of Mo on the high-temperature yield strength of fire-resistant steels
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摘要: 設計了一系列Mo質量分數從0.1%到0.8%的Fe-Mo-C三元模型鋼.采用兩種不同熱處理工藝制度得到不同的組織,研究了Mo元素對耐火鋼高溫強度的兩種強化形式:固溶強化和貝氏體相變強化.Mo可以顯著提高耐火鋼的高溫強度,它在耐火鋼中的主要高溫強化機理是固溶強化.Mo質量分數不高于0.5%時,其高溫固溶強化效果明顯,每添加0.1%的Mo,600℃的屈服強度增量為13.71 MPa;但當Mo質量分數大于0.5%后,高溫強度增幅逐漸減小.此外,貝氏體相變強化對耐火鋼的高溫強度也有重要影響.當貝氏體體積分數達到20%時,耐火鋼的高溫強度顯著增加.Abstract: A series of Fe-Mo-C steels with the Mo mass fraction of 0.1%to 0.8%were designed to study the high-temperature strengthening mechanisms of fire-resistant steels with Mo addition.Two heat treatments were carried out on the Fe-Mo-C steels to investigate the strength contributions of Mo addition from solid-solution strengthening and bainite strengthening.It is found that Mo can remarkably increase the high-temperature strength of the Fe-Mo-C steels.The dominant strengthening mechanism is solid-solution strengthening.The contribution of Mo addition to strengthening the Fe-Mo-C steels shows a rapid increase with the mass fraction of Mo no more than 0.5%,and the yield strength at 600℃ goes up by a significant 13.71 MPa per 0.1%Mo addition.But the high-temperature strength slowly increases when the mass fraction of Mo is more than 0.5%.Bainite strengthening also has great effect on the high-temperature strength of the Fe-Mo-C steels,and the strength increases remarkably when the volume fraction of bainite exceeds 20%.
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Key words:
- fire-resistant steel /
- molybdenum /
- strength of materials /
- strengthening /
- bainite
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