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Effect of Heat Treatment on Microstructure and Mechanical Properties of API X90 Pipeline Steel Welded Joints

机译:热处理对API X90管道钢焊接接头微观结构和力学性能的影响

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摘要

In this work, X90 pipeline steel was welded by shielded metal arc welding with root and submerged arc welding with calk and cap. After that, the joint was tempered at 550 degrees C and 600 degrees C. Subsequently, the microstructure and mechanical properties were investigated by optical microscope, scanning electron microscope (SEM) and Vickers hardness tester. The fracture surface of welded joint was analyzed by SEM. The experiments show that: After high-temperature tempering treatment, the Widmanstatten structure disappears in coarse-grained region. The number of lath martensite in the original structure of the welded joint decreases, and the quantity of granular bainite increases. The acicular ferrite disappears gradually and the polygonal ferrite grains increase, and the M/A island components decompose into fine grains with the increase in tempering temperature. The mechanical properties of the joints also change and the hardness rises because of the disappearance of Widmanstatten structure improves after heat treatment, and yield strength and tensile strength of the specimens have the lowest values after tempering at 550 degrees C. After tempering at 600 degrees C, the hardness decreases and strength-ductility reaches 11,571 MPa%. The tensile fracture of 600 degrees C sample presents delamination and ductile fracture. Through comparative analysis, it can be concluded that the plasticity and toughness of multilayer welded joints after tempering at 600 degrees C is improved, and they have better comprehensive mechanical properties.
机译:在这项工作中,X90管道钢通过屏蔽金属弧焊焊接,带有根和潜水电弧焊接,用片和盖。之后,将接头在550℃和600℃下进行回火。随后,通过光学显微镜,扫描电子显微镜(SEM)和维氏硬度测试仪研究了微观结构和机械性能。通过SEM分析焊接接头的断裂表面。实验表明:高温回火处理后,宽阔的结构在粗粒区域消失。焊接接头原始结构中的Lath Martensite的数量降低,粒状贝氏体的量增加。针状铁氧体逐渐消失,多边形铁氧体晶粒增加,并且M / A岛组分随着回火温度的增加而分解成细粒。接头的机械性能也发生变化,并且由于Widmanstatten结构的消失而改变并且硬度提高了热处理后,试样的屈服强度和抗拉强度在550℃下回火后的最低值。在600℃的回火后,在550℃下回火后的最低值,硬度降低,强度 - 延展性达到11,571MPa%。 600℃样品的拉伸骨折呈分层和延性骨折。通过比较分析,可以得出结论,改善了600℃的回火后多层焊接接头的可塑性和韧性得到改善,它们具有更好的综合机械性能。

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