Effects of intermediate cooling and tempering process on martensite-austenite constituents in niobium-bearing low carbon steel
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摘要: 利用熱膨脹儀對低碳含鈮鋼(0.028%C-0.25%Si-1.82%Mn-0.085%Nb)進行熱處理模擬,即950℃正火后快速冷卻到中間溫度350~550℃,隨后進行不同加熱速率、保溫溫度及保溫時間的回火處理.采用光學顯微鏡、掃描電鏡和圖像分析方法,分析了不同回火條件下組織中的馬氏體-奧氏體(MA)形貌、尺寸及分布.結果表明:回火前的終冷溫度在貝氏體相變溫度區間及提高回火升溫速率,會增加回火組織中MA的體積分數,MA體積分數最高達到7.9%.提高回火溫度和延長回火時間,MA的體積分數會出現峰值.回火后,MA平均尺寸在0.77~1.48μm.提高終冷溫度、升溫速率、回火溫度和延長回火時間,會使回火后的MA粗大,并呈多邊形化.MA的體積分數和平均尺寸主要受中間冷卻過程結束時未轉變奧氏體量、回火過程中鐵素體向殘余奧氏體碳擴散程度以及回火后殘余奧氏體穩定性的影響.Abstract: Heat treatment processes were simulated with a thermo-analyse simulator for niobium-bearing low carbon steel (0.028%C-0.25%Si-1.82%Mn-0.085%Nb). In the processes, the samples were cooled down to a final cooling temperature of 350 to 550℃ after being normalized at 950℃, then reheated at different ratios, and tempered at different temperatures for different holding time periods. The morphology, the size and distribution of martensite-austenite (MA) constituents obtained under different tempering conditions were investigated by optical microscopy, scanning electron microscopy (SEM) and image analysis. The results show that the enhancement of reheating ratio and the final cooling temperature in the range of bainite transition lead to an increase of MA volume fraction, and the maximum volume fraction of MA constituents is up to 7.9%. Tempering at high holding temperature for long holding time can result in an occurrence of the volume fraction peak of MA constituents. The average grain size of MA constituents is 0.77 to 1.48 μm after tempering. MA grains grow up and tend to be in polygonal shape when the final cooling temperature, reheating ratio and holding temperature increase and the holding time prolongs. The volume fraction and average grain size of MA constituents are mainly affected by the quantity of untransformed austenite after intermediate cooling, the evolution of carbon diffusion from ferrite to retained austenite during tempering and the stability of retained austenite after tempering.
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Key words:
- low carbon steel /
- niobium /
- martensite /
- austenite /
- tempering /
- cooling /
- phase transitions /
- microstructure
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