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首页> 外文期刊>Materials science forum >Microstructure and Properties of HAZ in Low-Carbon Bainite E550 Steel during Double-Pass Welding Thermal Cycle
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Microstructure and Properties of HAZ in Low-Carbon Bainite E550 Steel during Double-Pass Welding Thermal Cycle

机译:双通焊热循环中低碳贝氏体E550钢HAZ的组织与性能

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摘要

Investigations on the microstructure and properties of the Coarse-Grained Heat-Affected Zone (CGHAZ) and intercritical reheated Coarse-Grained Heat-Affected Zone (ICCGHAZ) of a low-carbon bainite E550 steel were carried out using thermal simulation technology in this paper. Double-pass welding thermal cycle were performed on Gleeble-3800 thermal simulator, tempering heat treatment of the critical coarse crystal zone carried out in a box resistance furnace, low impact energies at -40 °C and Vickers hardness determined, and the microstructure were observed. The experimental results show that the microstructure of CGHAZ (T_(p1) is 1320 °C) was dominated by coarse granular bainite and Lath bainite Ferrite, the impact toughness of CGHAZ was poor. The toughness of the CGHAZ was improved after second welding heat cycle except intercritical two-phase heating. When the peak temperature of the second thermal cycle(T_(p2)) was 650 °C, martensite-austenite (M-A) constituent of original CGHAZ wasdecomposed and refined, impact toughness and hardness were all higher than that of CGHAZ; When T_(p2) is 750 °C, there was a " necklace" distribution of massive M-A constituent in this ICCGHAZ, the impact energy at -40 °C prominently decreased and Hardness went up; When T_(p2) was in the temperature range of 850 °C ~1100 °C, the microstructure was mainly finer granular bainite, the toughness of CGHAZ could be effectively improved; When T_(p2) was over 1100 °C, M-A constituents become coarse, the toughness declined slightly. The changing of hardness was the opposite of toughness but the hardness fluctuation was comparatively small. After tempering at different temperature (520 °C~640 °C), the grain boundary "necklace" structure of ICCGHAZ was still obvious, some of the M-A constituent were decomposed, the hardness decreased, the lowest hardness was obtained in 610 °C.
机译:在本文中使用热仿真技术,对低碳贝氏体E550钢进行粗粒热影响区(CGHAZ)和跨临临型粗粒度热影响区(ICCGHAZ)的粗颗粒和临临粗粒热影响区(ICCGHAZ)的研究。在GLEEBLE-3800热模拟器上进行双通焊接热循环,在箱电阻炉中进行临界粗晶区的回火热处理,在-40°C和测定的维氏硬度下进行低冲击能量,并且观察到微观结构。实验结果表明,CGHAZ(T_(P1)为1320°C)的微观结构由粗粒状贝氏体和Lath Bainite铁氧体主导,CGHAZ的冲击韧性差。除了间临界两相加热之外,第二焊接热循环后,CGHAZ的韧性得到改善。当第二热循环(T_(P2))的峰值温度为650℃时,原始CGHAZ的马氏体 - 奥氏体(M-A)成分均以高于CGHAZ的抗冲韧性和硬度均高于CGHAZ;当T_(P2)为750°C时,在这种ICCGHAZ中存在“项链”分布,在该ICCGHAZ中的影响,在-40°C下的冲击能量突出减少,硬度上升;当T_(P2)在850℃〜1100℃的温度范围内时,微观结构主要是粒状贝氏体,CGHAZ的韧性可以有效地改善;当T_(P2)超过1100℃时,M-A成分变得粗糙,韧性略微下降。硬度变化与韧性相反,但硬度波动相对较小。在不同温度(520°C〜640°C)的回火后,ICCGGGHAZ的晶界“项链”结构仍然明显,一些M-A成分分解,硬度降低,在610℃下获得最低硬度。

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