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首页> 外文期刊>Journal of Materials Research and Technology >Comparison of microstructures and properties of X80 pipeline steel additively manufactured based on laser welding with filler wire and cold metal transfer
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Comparison of microstructures and properties of X80 pipeline steel additively manufactured based on laser welding with filler wire and cold metal transfer

机译:基于激光焊接填料和冷金属转移的X80管线钢的微观结构与性能的比较

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Additive manufacturing (AM) with low heat input is a crucial technology of on-line maintenance of long-distance oil & gas transmission pipeline. By utilizing two methods, i.e. laser and cold metal transfer (CMT) arc, with low heat input and a homemade filler wire, the AM test was separately carried out on the widely used X80 steel. Parameters and the overlap ratio of AM processes were optimized at first; afterwards, the additively manufactured parts (AMPs) were prepared on the surface of the X80 pipeline steel substrate. Subsequently, the microstructures of the AMPs were observed and also microhardness test, impact test and tensile test were carried out. The result showed that the heat affected zones (HAZs) of the substrate were both not softened by applying the two methods. The microhardne values of the laser- and CMT-based AMPs were separately 140% and 119% that of the substrate, respectively. The impact energies of the laser- and CMT-based AMPs at room temperature were 53% and 67% that of the substrate, respectively. The average tensile strengths of both laser- and CMT-based AMPs were higher than that of X80 substrate, while the average percentage elongations after fracture of laser- and CMT-based AMPs are similar, which both accounted for about 66% that of the substrate. It is noted that the mechanical properties of the laser- and CMT-based AMPs both showed anisotropy, in which the anisotropy of the former was more significant.
机译:具有低热量输入的添加剂制造(AM)是长途油气传输管道在线维护的关键技术。通过利用两种方法,即激光和冷金属转移(CMT)弧,具有低热输入和自制填充线,AM测试在广泛使用的X80钢上分别进行。首先优化AM过程的参数和重叠比率;然后,在X80管线钢基板的表面上制备含有添加的零件(AMPs)。随后,观察到AMP的微观结构,还进行了微硬度测试,冲击试验和拉伸试验。结果表明,通过施加两种方法,衬底的热影响区域(HAZS)均不能软化。激光和CMT的AMP的微骨恒温值分别分别为底物的140%和119%。在室温下激光和CMT的AMP的冲击能量分别为底物的53%和67%。激光和基于CMT的AMP的平均抗拉强度高于X80衬底的抗拉强度,而激光和CMT的AMP的断裂后的平均百分比伸长率为相似,既占基材的约66% 。应注意,基于激光和CMT的AMP的机械性能均显示各向异性,其中前者的各向异性更为显着。

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