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Analysis and Estimation of Yield Strength of API X80 Linepipe Steel Pipe by Low-Cycle Fatigue Tests

机译:低周疲劳试验对API X80管线管钢管屈服强度的分析与估算

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摘要

In the present study, spiral piping was conducted on API X80 linepipe steel, and the outer and inner wall pipe yield strengths were measured. A low-cycle fatigue test was conducted on a leveled X80 steel sheet to simulate piping and flattening processes, and the strain hardening and Bauschingcr effects, induced from different strain histories, were evaluated and combined using Swift's equation and the Bauschinger stress parameter, respectively. By analyzing the stress-strain curves obtained from the low-cycle fatigue test, the yield strengths of the outer and inner walls were estimated to be 592 IVlPa and 492 MPa, respectively, which are lower by 20-80 MPa than that of the actual pipe used. Possible reasons for measured and estimated yield strength differences could be the simulation determining procedure of the pre-strain and Bauschinger stress parameters, preposition of same strain hardening behavior depending on strain history, and pre-strain differences depending on thickness location in the steel sheet during piping.
机译:在本研究中,对API X80管线钢进行了螺旋管道,并测量了内,外管的屈服强度。在矫直的X80钢板上进行了低周疲劳测试,以模拟管道和扁平化过程,并分别评估了不同应变历史引起的应变硬化和Bauschingcr效应,并分别使用Swift方程和Bauschinger应力参数进行了组合。通过分析低周疲劳试验获得的应力-应变曲线,估计外壁和内壁的屈服强度分别为592 IVlPa和492 MPa,比实际降低了20-80 MPa。使用的管道。测量和估算屈服强度差异的可能原因可能是:预应变和包辛格应力参数的模拟确定程序,取决于应变历史的相同应变硬化行为的预设,以及取决于钢板在加工过程中钢板厚度位置的预应变差异管道。

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