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DUCTILE CRACKING EVALUATION OF X80/X100 HIGH STRENGTH LINEPIPES

机译:X80 / X100高强度线桩的韧性开裂评价

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The ductile cracking behavior of girth weld joints, in X80 and X100 grade linepipe, was investigated using single edge notched (SENT) specimens, notched round bar (NRB) specimens and wide plate (WP) specimens. FE analyses were carried out to evaluate critical conditions for ductile cracking at the notch tip. The effect of Y/T ratio of base material on ductile cracking for welded joints was also studied. Ductile cracking from the notch tip in WP specimens can be estimated by using the critical equivalent plastic strain, which can be obtained from SENT or NRB specimens. In addition, a simplified prediction method for ductile cracking by using effective opening displacement was proposed and its validity demonstrated by comparison to the equivalent plastic strain at the notch tip. With respect to the influence of material properties on ductile cracking behavior, deformability of joint to ductile cracking was enhanced by reduction of Y/T ratio of base material. Based on the experimental results and FE analyses, pipe design to prevent ductile cracking from surface flaws under large deformation was discussed.
机译:使用单边缘缺口(送)样品,缺口圆形条(NRB)样本和宽板(WP)样本进行研究,研究了环状焊接接头,X80和X100级线管的延展性裂缝行为。进行Fe分析以评估凹口尖端延性裂缝的临界条件。还研究了Y / T基材对焊接接头延性开裂的影响。通过使用临界当量塑性菌株可以估计来自WP样本中的凹口尖端的延展性裂缝,其可以从送送或NRB样本获得。另外,提出了一种通过使用有效开口位移的延性开裂的简化预测方法,并通过与凹口尖端的等效塑性应变比较来证明其有效性。关于材料性质对延性开裂行为的影响,通过降低基材的Y / T比率提高了关节与延展性裂化的可变形性。基于实验结果和Fe分析,讨论了防止在大变形下从表面缺陷的延展性裂解的管道设计。

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