首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Microstructure and mechanical properties of high strength TMCP steel hybrid disk laser-MAG welded joint
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Microstructure and mechanical properties of high strength TMCP steel hybrid disk laser-MAG welded joint

机译:高强度TMCP钢混合盘激光焊接接头的微观结构和力学性能

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摘要

Hybrid laser-arc welding (HLAW) was carried out on high strength thermo-mechanical controlled process (TMCP) steel of 14 mm thickness using single-pass welding (SPW) and multi-pass welding (MPW) processes. Well-formed weld joints with good performance were successfully obtained. The results showed that the microstructure of weld was pre-eutectoid ferrite, acicular ferrite and some granular bainite. There were mainly lath bainite, granular bainite and acicular ferrite in the heat-affected zone. The grain sizes of SPW were thicker than MPW, and the bainite content of MPW was higher than SPW. The average hardness value of the fusion zone was lower than that of the Heat affected zone, but higher than that of the base material. The weld was divided into upper arc domain zone (ADZ) and lower laser domain zone (LDZ). The ADZ was harder than the LDZ. The average absorbed energy of SPW and MPW in the fusion zone at -40 degrees C was 125.5 and 92 J/cm(2), respectively. The influences of microstructure on impact toughness were summarized by analyzing the hardness distribution and microstructure of the welded joint. The brittle transition temperatures of the two processes obtained by the energy criterion and the morphology criterion were close to each other.
机译:使用单通焊接(SPW)和多通焊(MPW)工艺,在高强度热机械控制过程(TMCP)钢上进行混合激光弧焊(HLAW)。成功地获得了具有良好性能的良好的焊接接头。结果表明,焊缝的微观结构是预切开酸盐铁氧体,针状铁氧体和一些粒状贝氏体。主要有Lath贝氏体,颗粒状贝氏体和热影响区域的针状铁氧体。 SPW的晶粒尺寸比MPW更厚,MPW的贝氏体含量高于SPW。融合区的平均硬度值低于热影响区的硬度值,但高于基材的硬度。焊接分为上部弧形区域(ADZ)和下激光域区(LDZ)。 adz比LDZ更难。 -40℃的融合区中SPW和MPW的平均吸收能量分别为125.5和92J / cm(2)。通过分析焊接接头的硬度分布和微观结构,总结了微观结构对冲击韧性的影响。通过能量标准获得的两个过程的脆性转变温度和形态标准彼此接近。

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