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Low Circle Fatigue Behavior of X80 High-Strain Line pipe

机译:X80高应变线管的低圆疲劳行为

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Symmetrical push-pull low circle fatigue tests have been performed on high-strain X80 line pipe material.Micro-analysis has been performed for deformation mechanism as well.Results show that X80 high-strain line pipe material exhibited a higher ductility and long low-circle fatigue life.Cyclic softening is observed at low strain amplitude of 0.4% and 0.6%,however,cyclic softening occurred after slight cyclic hardening at high strain amplitude of 1.0%,1.2% and 1.4%.Generally,Cyclic response curves show that the cyclic softening occurred at all strains amplitude (0.4%~1.4%).Fractography analysis suggests that transgranular fracture with well-developed fatigue striations and obvious second crack is the predominant failure mode.The amount of second cracks is much fewer deformed in high-strain X80 line pipe material than that in conventional X80 line pipe material.TEM examination reveals that the primary deformation mode of two kinds of material was dislocation slipping.Abundant dislocation glide bands and dislocation cells are formed at grain boundary as strain amplitude increased.Deformation in ferrite has been suppressed and formation of dislocation cell inside the ferrite has been postponed due to large content of M/A constituent.
机译:已经在高菌株X80线管材料上进行了对称推挽低圆形疲劳试验。已经进行了变形机制的测量分析。结果表明,X80高应变线管道材料表现出更高的延展性和长低圆圈疲劳寿命。在低应变幅度为0.4%和0.6%时观察到环软化,但在高应变幅度为1.0%,1.2%和1.4%的循环硬化后发生循环软化.generally,循环响应曲线显示在所有菌株幅度发生循环软化(0.4%〜1.4%)。Fractography分析表明,具有发育良好的疲劳条纹和明显的第二裂缝的响变骨折是主要的失效模式。第二裂缝的数量在高菌株中变形得多。 X80线管材料比传统的X80线管料。em检查显示,两种材料的主要变形模式是位错滑动。脱位在晶界处形成滑动带和位错细胞,因为抑制铁氧体中的变形并在铁素体内形成的脱位细胞由于M / A组分的大量而被推迟。

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