Effect of zirconium on the low-temperature toughness of CGHAZ in F40 ship plates containing titanium
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摘要: 在Gleeble3500熱模擬試驗機上,針對添加質量分數0.01%的鋯與未添加鋯的兩種成分的F40級船板鋼,分別進行了不同相變冷卻時間T8/5下的焊接熱模擬試驗.結果表明,微量鋯的加入,使含鈦F40鋼耐大熱輸入焊接性能大幅提高,T8/5提高至100s時,-60℃沖擊功可達238J.利用熱力學計算并結合掃描電鏡觀察含鋯的F40鋼板粗晶熱影響區組織發現,隨著T8/5的增大,伴隨著原有含鋯復合夾雜物尺寸形態的變化,有利于誘導針狀鐵素體形核的尺寸為1~3μm的鋯-鈦復合夾雜物數量呈非單調減少趨勢,導致粗晶熱影響區沖擊韌性隨T8/5增大呈現一定的規律性.Abstract: Weld thermal simulation experiments of F40 ship plates with 0.01% zirconium or not under different phase-change cooling time T8/5 were conducted on a Gleeble3500 thermal simulation test machine.The results show that the anti-large heat input welding performance is improved significantly for F40 ship plates containing titanium by adding trace amounts of zirconium,and the impact energy reachs 238J at-60℃ when T8/5 is 100s.The microstructure of the coarse grain heat affected zone(CGHAZ) in the F40 ship plates was studied by thermodynamic calculations and scanning electron microscopy.It is indicated that the size and mophyloy of original complex inclusions containing zirconium change with increasing T8/5.Therefore the number of the inclusions of 1 to 3 μm including zirconium which contribute to acicular ferrite nucleation non-monotonically decreases,leading to the toughness fluctuation of the CGHAZ with the welding heat input increasing.
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Key words:
- shipbuilding materials /
- plates /
- heat affected zone /
- low-temperature properties /
- toughness /
- zirconium /
- acicular ferrite
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