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Effect of Heat Treatment on Microstructure and Mechanical Properties of TRIP Seamless Steel Tube

机译:热处理对TRIP无缝钢管组织和力学性能的影响

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摘要

A low-carbon TRIP seamless steel tube, which is expected-be used in the hydroforming process, was successfully fabricated using piercing, cold-drawing and two-stage heat treatment process. In this study,-maximize the volume fraction and stability of retained austenite as well as-obtain a TRIP seamless steel tube with good combination of strength and ductility, the optimal heat treatment conditions (intercritical annealing "IA" and isothermal bainite treatment "IBT") were investigated. The influence of heat treatment on the microstructure of the TRIP seamless steel tube was studied via optical microscopy, TEM and XRD. The mechanical properties in axial and circumferential directions of TRIP seamless steel tube were also evaluated by conventional tensile test and the ring tensile test developed by the author, respectively. The results show that for a particular set of IA and IBT temperature, the volume fraction of retained austenite increased with increasing IA holding time but decreased with the increase of IBT holding time in the set of time range in this study. As a result, the high retained austenite volume fraction of 10.26% was obtained with IA holding time of 5minat IA temperature of 810°C, IBT holding time of 6min at temperature of 410CC. And this sample possessed a UTS of 542 MPa, YS of 355 MPa and EL of 35% in the circumferential direction obtained by the ring tensile test.
机译:通过穿孔,冷拔和两阶段热处理工艺成功制造了低碳TRIP无缝钢管,该钢管有望用于液压成型工艺。在这项研究中,最大程度地提高残余奥氏体的体积分数和稳定性,并获得具有强度和延展性,最佳热处理条件(临界退火“ IA”和等温贝氏体处理“ IBT”)良​​好结合的TRIP无缝钢管)进行了调查。通过光学显微镜,TEM和XRD研究了热处理对TRIP无缝钢管显微组织的影响。还分别通过常规拉伸试验和作者开发的环拉伸试验评估了TRIP无缝钢管在轴向和周向的力学性能。结果表明,在本研究中,对于一组特定的IA和IBT温度,残余奥氏体的体积分数随IA保持时间的增加而增加,但随着IBT保持时间的增加而减小。结果,在810℃的IA温度下5分钟的IA保持时间,在410CC的温度下IBT的保持时间为6分钟,获得了10.26%的高残留奥氏体体积分数。并且该样品在通过环拉伸试验获得的圆周方向上具有542MPa的UTS,355MPa的YS和35%的EL。

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