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5Cr9Si3鋼的高溫變形行為及流變應力異常變化機理

Hot deformation behavior and flow-stress anomaly of 5Cr9Si3 valve steel at elevated temperatures

  • 摘要: 通過不同熱加工參數下的熱壓縮試驗,研究了新型閥門鋼5Cr9Si3的高溫變形行為.5Cr9Si3鋼在850~900℃和1000~1100℃溫度區間內峰值應力分別隨溫度的升高而減小,而在900~1000℃溫度區間內出現峰值應力隨溫度升高而增大的異常現象.進一步的微觀組織及相結構演化分析表明:5Cr9Si3鋼在900~1000℃溫度區間內發生了由鐵素體向奧氏體的轉變,產生奧氏體相變強化;同時,隨著變形溫度的提高,碳化物的回溶造成碳元素和鉻元素對5Cr9Si3基體固溶強化效果增強.相變強化和固溶強化是導致5Cr9Si3在900~1000℃溫度區間內流變應力異常變化的主要原因.

     

    Abstract: The hot deformation behavior of 5Cr9Si3 valve steel was investigated by hot working simulation test at different hot working parameters. When the deformation temperature increases from 850 to 900℃ or from 1000 to 1100℃, the peak stress decreases; but when the deformation temperature increases in the range of 900 to 1000℃, the peak stress rises. Further microstructural and phase transformation analyses show that a transformation from α-ferrite to austenite occurring within the deformation temperature range from 900℃ to 1000℃ causes austenite phase transformation strengthening, inducing the increasing of hot deformation resistance. Also, with the increasing of deformation temperature, the dissolution of carbides leads to solution strengthening for the matrix. Thus, phase transformation strengthening and solution strengthening at elevated temperatures are the main reason for the abnormal variation of flow stress for 5Cr9Si3 valve steel.

     

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