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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructural Characteristics and Mechanical Properties in the Laser Beam Welded Joints of High-Strength Microalloyed Steel
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Microstructural Characteristics and Mechanical Properties in the Laser Beam Welded Joints of High-Strength Microalloyed Steel

机译:高强度微合金钢激光束焊接接头中的微观结构特性和机械性能

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The laser beam welded joints of the high-strength microalloyed steel consist of the base metal (BM), the partially transformed heat-affected zone I (PTHAZ-I), the partially transformed heat-affected zone II (PTHAZ-II), the fully transformed heat-affected zone (FTHAZ) and the fusion zone (FZ). The martensite/austenite (M/A) islands of the bainites in the PTHAZ-II are dense versus those in the PTHAZ-I, and the martensites exist in the FTHAZ and the FZ together with the bainites under the slow welding speed. The M/A islands of the bainites and/or the martensites in the PTHAZ become denser under the high welding speed, and the martensites in the FTHAZ and the FZ predominate. The low-angle boundary density and the high local misorientation proportion are used to identify the constituents roughly, consistent with the microstructural characteristics in the welded joints. The misorientation angle distributions are employed to evaluate the degree of the phase transformation, reflecting the change law of the degree of the phase transformation in the welded joints. The hardness and the tensile tests indicate that the HAZ and the FZ are stronger than the BM, dependent on the microstructures in the welded joints. The strengthening in the HAZ and the FZ is mainly attributed to the products of non-equilibrium phase transformation with the high dislocation density.
机译:高强度微合金钢的激光束焊接接头由基础金属(BM)组成,部分转化的热影响区I(Pthaz-I),部分转化的热影响区域II(Pthaz-II),完全转化的热影响区域(Fthaz)和融合区(FZ)。 Pthaz-II中的贝氏体的马氏体/奥氏体(M / A)岛是致密的与Pthaz-I中的群体,并且在Fthaz和FZ中存在马氏体,并在慢焊的速度下与贝氏体一起存在。贝氏体的M / A岛和/或PTHAZ中的马氏体在高焊接速度下变得更浓,Fthaz中的马氏体和FZ占主导地位。低角度边界密度和高地的错误化比例用于粗略地识别成分,与焊接接头中的微观结构特性一致。采用无主管角度分布来评估相变的程度,反映了焊接接头中相变度的变化规律。硬度和拉伸试验表明HAZ和FZ比BM更强,取决于焊接接头中的微观结构。 HAZ和FZ的强化主要归因于具有高位脱位密度的非平衡相变的产物。

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