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淬火工藝對含B低合金超厚鋼板淬透性能的影響

Effect of quench process on the hardenability of low alloy ultra-heavy plate steel containing boron

  • 摘要: 通過Jominy試驗模擬含B低合金超厚鋼板的淬火過程,測得不同淬火工藝下實驗鋼的硬度分布曲線,并借助光學顯微鏡、俄歇電子能譜等技術手段對低冷速條件下實驗鋼的顯微組織及B晶界偏聚進行了觀察和分析.發現在溫度不高于920℃條件下,提高淬火溫度或適當延長保溫時間可顯著改善超厚板的淬透性,且在此條件下合適的兩次循環淬火可以獲得更為理想的淬透性.溫度高于920℃后,單次淬火或兩次循環淬火均不利于實驗鋼的淬透性能的改善.

     

    Abstract: The hardenability curves of low alloy ultra-heavy plate steel containing boron under different quench processes were obtained by Jominy end quenching test. Under low cooling rate conditions, the microstructures of the ultra-heavy plate steel were observed by optical microscopy (OM) and the grain boundary segregation of boron was tested by auger electronic spectroscopy (AES). It is demonstrated that at the quenching temperature not higher than 920℃, the ultra-heavy plate steel has a better hardenability when the quenching temperature is higher or the holding time is properly longer, and a more perfect hardenability is got by appropriate double quenching. However, when the quenching temperature is higher than 920℃, the hardenability of the ultra-heavy plate steel deteriorates sharply by using single or double quenching.

     

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