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首页> 外文期刊>Archives of Metallurgy and Materials >EFFECT OF WELDING THERMAL CYCLES ON MICROSTRUCTURE AND MECHANICAL PROPERTIES OF SIMULATED HEAT AFFECTED ZONE FOR A WELDOX 1300 ULTRA-HIGH STRENGTH ALLOY STEEL
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EFFECT OF WELDING THERMAL CYCLES ON MICROSTRUCTURE AND MECHANICAL PROPERTIES OF SIMULATED HEAT AFFECTED ZONE FOR A WELDOX 1300 ULTRA-HIGH STRENGTH ALLOY STEEL

机译:焊接热循环对焊接仪1300超高强度合金钢模拟热影响区微观结构和力学性能的影响

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摘要

In the present study, the investigation of weldability of ultra-high strength steel has been presented. The thermal simulated samples were used to investigate the effect of welding cooling time t(8/5) on microstructure and mechanical properties of heat affected zone (HAZ) for a Weldox 1300 ultra-high strength steel. In the frame of these investigation the microstructure was studied by light and transmission electron microscopies. Mechanical properties of parent material were analysed by tensile, impact and hardness tests. In details the influence of cooling time in the range of 2,5 divided by 300 sec. on hardness, impact toughness and microstructure of simulated HAZ was studied by using welding thermal simulation test. The microstructure of ultra-high strength steel is mainly composed of tempered martensite. The results show that the impact toughness and hardness decrease with increase of t(8/5) under condition of a single thermal cycle in simulated HAZ. The increase of cooling time to 300 s causes that the microstructure consists of ferrite and bainite mixture. Lower hardness, for t(8/5) >= 60 s indicated that low risk of cold cracking in HAZ for longer cooling time, exists.
机译:在本研究中,已经提出了超高强度钢的可焊性调查。热模拟样品用于研究焊接冷却时间T(8/5)对Weldox 1300超高强度钢的热影响区(HAZ)的微观结构和力学性能的影响。在这些研究的框架中,通过光和透射电子显微镜研究了微观结构。通过拉伸,冲击和硬度试验分析母材的力学性能。详细介绍了冷却时间在2,5的范围内的影响除以300秒。通过使用焊接热仿真试验研究了模拟HAZ的硬度,抗冲韧性和微观结构。超高强度钢的微观结构主要由回火马氏体组成。结果表明,在模拟HAZ中的单个热循环条件下,冲击韧性和硬度随着T(8/5)的增加而降低。冷却时间的增加至300秒,使微观结构由铁素体和贝氏体混合物组成。对于T(8/5)> = 60秒表示较低的硬度,表明HAZ中的冷裂化风险低,以较长的冷却时间存在。

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