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Study on laser welded heat-affected zone in new ultralow carbon bainitic steel

机译:新型超低碳贝氏体钢的激光焊接热影响区研究

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摘要

800 MPa grade ultralow carbon bainitic (NULCB) steel is the recently developed new generation steel, which was produced by thermo mechanical controlled processing & relaxation-precipitation controlling transformation (TMCP&RPC) technique. The microstructure and the mechanical properties of the heat-affected zone (HAZ) in NULCB steel under laser welding conditions were investigated by using a Gleeble-1500 thermal simulator. The experimental results indicate that the simplex microstructure in the HAZ is granular bainite that consists of bainite-ferrite (BF) lath and M-A constituent when the cooling time from 800 to 500℃ (t_(8/5)) is 0.3-30 s, and the M-A constituent consists of twinned martensite and residual austenite. As t_(8/5) increases, the hardness and tensile strength of HAZ decreases, but they are higher than that of the base metal, indicating the absence of softened zone after laser welding. The impact toughness of HAZ increases at first and then decreases when t_(8/5) increases. The impact energy of HAZ is much higher than that of the base metal when t_(8/5) is between 3 and 15 s. It indicates that excellent low temperature toughness can be obtained under appropriate laser welding conditions.
机译:800 MPa级超低碳贝氏体(NULCB)钢是最近开发的新一代钢,它是通过热机械控制加工和弛豫-沉淀控制转变(TMCP&RPC)技术生产的。使用Gleeble-1500热模拟机研究了NULCB钢在激光焊接条件下热影响区(HAZ)的组织和力学性能。实验结果表明,当冷却时间为800〜500℃(t_(8/5))为0.3-30 s时,热影响区的单纯形组织是由贝氏体-铁素体板条和MA组成的粒状贝氏体, MA成分包括孪晶马氏体和残余奥氏体。随着t_(8/5)的增加,HAZ的硬度和抗拉强度降低,但高于母材,表明激光焊接后没有软化区。 HAZ的冲击韧性首先增加,然后在t_(8/5)增加时减小。当t_(8/5)在3到15 s之间时,HAZ的冲击能量远高于母材。这表明在适当的激光焊接条件下可以获得优异的低温韧性。

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