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李亚江, 邹增大, 陈祝年, 尹士科. HQ130高强钢热影响区组织及韧性[J]. 焊接学报, 1997, (1): 25-30.
引用本文: 李亚江, 邹增大, 陈祝年, 尹士科. HQ130高强钢热影响区组织及韧性[J]. 焊接学报, 1997, (1): 25-30.
Li Yajiang, Zou Zengda, Chen Zhunjan, Yin Shike. Microstructure and Toughness in HAZ of HQ130 Steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 1997, (1): 25-30.
Citation: Li Yajiang, Zou Zengda, Chen Zhunjan, Yin Shike. Microstructure and Toughness in HAZ of HQ130 Steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 1997, (1): 25-30.

HQ130高强钢热影响区组织及韧性

Microstructure and Toughness in HAZ of HQ130 Steel

  • 摘要: 采用金相、扫描电镜(SEM)和热模拟方法,研究了不同峰值温度(Tm)和冷却时间(t8/5)对HQ130钢焊接热影响区(HAZ)显微组织、冲击韧性和断口形态的影响。试验结果表明,峰值温度1350℃,t8/5为5~20s时,HAZ韧性较好,t8/5为40s时,HAZ韧性明显降低。Tm由1350℃降低到800℃时,HAZ冲击韧性相应降低;在Tm=800℃附近HAZ出现脆性区,冲击韧性明显较低;在Tm=700℃附近HAZ出现回火软化区,冲击韧性较高,硬度明显下降。实际焊接生产中应采用较小的焊接能量(q/v≤20kJ/cm),以防止该钢HAZ软化和脆化现象。

     

    Abstract: The effec of different peak temperature (Tm) and cooling time (t8/5) on microstructure, hardness, impact toughness and fracture morphology in the heat-affected zone (HAZ) of HQ130 steel was studied by using matallography, SEM and the weld thermo-simulation test.Experimental results indicated that the impact toughness in the simulated HAZ was higher when Tm=1350℃ and t8/5 from 5s to 2s.But when t8/5=40s, impact toughness decreased obvioulsy.Impact toughness was decreased when Tm change from 1350℃ to 800℃, under the conditions of a single thermal cycle.There was a brittle zone in the vicinity of Tm=800℃,where the inpact toughness was considerably lower.There was softened zone in the vicinity of Tm=700℃, where the hardness was decreased but the toughness was higher.In practical welding application of multi-layer and multi-pass welding, the welding heat input should be strictly limited (q/v≤ 20kJ/cm), to reduce the softness and brittleness in the HAZ of HQ130 steel.

     

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