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微合金鋼中氧化物夾雜對焊接熱影響區組織、性能的影響

Influence of oxide inclusions on the microstructure and properties of weld-heat-affected zones in a microalloyed steel

  • 摘要: 研究了一種微合金鋼中夾雜物與模擬焊接熱影響區微觀組織以及低溫沖擊韌性的關系.結果發現:實驗鋼夾雜物以類球狀Ti2O3-Al2O3-MnS型復合夾雜為主,分布較為均勻且尺寸小于3μm;在相變冷卻時間較短(T8/5=40s)時,試樣微觀組織以針狀鐵素體和沿晶鐵素體為主,板條貝氏體束較少,原奧氏體晶粒尺寸在50μm左右,低溫沖擊性能優良;隨著相變冷卻時間的延長(T8/5=60,80s),原奧氏體晶粒尺寸也隨之增大,相變溫度的提高和相變區域的變寬使得位于原奧氏體晶界附近的夾雜物對晶界處多邊形鐵素體的誘導促進作用更加明顯,沿晶鐵素體長大劇烈,一定程度上消耗了晶內針狀鐵素體對組織的分割細化作用,使得低溫沖擊韌性有所降低.

     

    Abstract: The relationship between inclusions and the microstructure of the simulated weld-heat-affected zone (HAZ) in a microalloyed steel as well as low-temperature impact toughness was investigated. The results show that inclusions in the steel are mainly Ti2O3-Al2O3-MnS, these complex inclusions are well distributed and their size is less than 3 m. The microstrueture of HAZ consists of aeicalar ferrite, intergranular ferrite and small amount of lath bainite while the cooling time daring phase formation is short (T8/5=40 s), the prior austenite grain size is about 50 μm and the samples have good impact toughness under this welding thermal simulation condition. The size of prior austenite grains increases with the increase of transformation cooling time (T8/5=60 and 80 s), the increase of transformation temperature and the broadening of the transformation region make the promotion effect on polygonal ferrite induced by inclusions in the vicinity of the grain boundaries become more obviously, the intergranular ferrite grows up rapidly, the refinement effect of intragranular acicular ferrite is lowered to some extent, and the low-temperature impact toughness is decreased.

     

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