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焊接熱循環參數對大線能量焊接用鋼EH40熱影響區組織和性能的影響

Effect of welding thermal cycle parameters in the heat affected zone of steel EH40 for on the microstructure and properties high heat input welding

  • 摘要: 利用熱模擬技術及光學顯微鏡、透射電鏡研究了焊接熱循環參數對大線能量焊接用船板鋼熱影響區組織和性能的影響.發現模擬焊接熱影響區組織主要由粒狀貝氏體、鐵素體和珠光體組成,且隨著峰值溫度和冷卻時間的變化,熱影響區的組織發生較大的變化;熱影響區的沖擊韌性總體水平較高,均在200 J以上,沖擊韌性并不隨著峰值溫度和冷卻時間的增加而單調變化;熱影響區M-A島的數量、尺寸、分布和形態影響熱影響區的韌性.

     

    Abstract: The effects of welding thermal cycle parameters on the microstructure and properties in the heat affected zone (HAZ) of hull structure steel for high heat input welding were studied by thermal simulation technique, optical microscopy and transmission electron microscopy (TEM). It is found that the microstructure of the simulated HAZ is mainly composed of granular bainite, ferrite and pearlite, but it varies markedly with the change of peak temperature and cooling time. The overall level of impact toughness of the simulated HAZ is higher than 200 J, and the impact toughness does not monotonously change with the peak temperature and the cooling time increasing. The amount, size, distribution and shape of M-A constituents in the simulated HAZ are the main influencing factors on the impact toughness.

     

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