Effect of heat treatment on the microstructure and mechanical properties of 1000MPa grade structural steel for construction machinery
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摘要: 設計了一種低碳Mn-Mo-Nb-Cu-B系超高強度工程機械結構用鋼,研究了在同種成分條件下TMCP(thermo-mechan-ical control-process)+回火與控軋+直接淬火+回火兩種工藝對鋼組織和性能的影響.對比分析了熱處理前后鋼板各項力學性能和組織的變化.結果表明,兩種工藝條件下鋼的屈服強度和沖擊性能的變化趨勢相似,經500~620℃回火1h后鋼的屈服強度均有大幅度提高.控軋+直接淬火+回火得到的鋼板綜合性能明顯優于TMCP+回火,前者在600℃回火后屈服強度仍達到1000MPa以上,同時延伸率達到18%,-40℃沖擊功大于30J,而后者塑性較好但強度稍低;隨回火溫度的升高,控軋+直接淬火+回火工藝條件下的組織演化速度要快于TMCP+回火工藝.Abstract: A low-carbon Mn-Mo-Nb-Cu-B ultra high strength structural steel for construction machinery was designed and the effect of TMCP (thermo-mechanical control process) + tempering (TMCP+T) technology and controlled rolling + direct quenching and tempering (CR+DQ+T) technology on its microstructure and mechanical properties under the same composition was studied. The changes in mechanical properties and microstructures of the steel plates before and after heat treatment were comparatively analyzed. The results show that after tempering from 500℃ to 620℃ for 1h, there is a substantial increase of the steel plates in yield strength. The performance of the steel plates treated by CR+DQ+T process is obviously superior to that by TMCP+T process, and the yield strength of the former is still more than 1000MPa after tempering at 600℃. Besides, the elongation can reach 18% and the impact energy at-40℃ is more than 30J. However, the plasticity of the latter is better but the strength slightly lower. With the tempering temperature increasing, the evolution speed of microstructures under the condition of CR+DQ+T is more quickly than that under the condition of TMCP+T.
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Key words:
- structural steel /
- construction machinery /
- heat treatment /
- microstructure /
- mechanical properties
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