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DIRECT COMPARISON OF SINGLE-SPECIMEN CLAMPED SE(T) TEST METHODS ON X100 LINE PIPE STEEL

机译:X100管线钢单试样夹紧SE(T)试验方法的直接比较

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The clamped single edge-notched tension (SE(T)) specimen has been widely used in a single-specimen testing scheme to generate fracture resistance curves for high strength line-pipe steels. The SE(T) specimen with appropriate notch geometry is a low-constraint specimen designed to reduce conservatism in the measurement of fracture toughness. The crack driving force is taken as either the J-integral or crack tip opening displacement (CTOD); it is generally accepted that the two parameters are interchangeable and equivalent using a simple closed form solution. However, the assumption that they are interchangeable, and to what extent, hasn't been previously investigated experimentally on the same SE(T) specimen. This paper presents multiple test methods that were simultaneously employed on the same SE(T) specimens. The instrumentation includes: clip-gauges to measure surface crack mouth opening displacements (CMOD) and CTOD by the double-clip-gauge method; strain-gage arrays for direct J-integral measurements; and direct-current potential-drop (DCPD) instrumentation for supplementary crack size measurement. A direct comparison of ductile crack-growth resistance curves generated using J-integral and CTOD is presented here where each represents a different experimental and analytical approach. The two methods are in reasonable agreement over a narrow range of crack growth, differing slightly at initiation and diverging with increasing crack growth. Analysis of the supplementary instrumentation (i.e., strain gages, extensometers and DCPD) will be provided in a future publication.
机译:夹紧的单边缘缺口拉力(SE(T))试样已被广泛用于单试样测试方案中,以生成高强度管线钢的抗断裂曲线。具有适当槽口几何形状的SE(T)试样是一种低约束试样,旨在降低断裂韧性的测量中的保守性。裂纹驱动力取J积分值或裂纹尖端开口位移(CTOD)。通常认为,使用简单的封闭形式解决方案,这两个参数是可互换且等效的。但是,关于它们是可互换的以及在何种程度上可以互换的假设,以前尚未在同一SE(T)样品上进行过实验研究。本文介绍了在同一SE(T)标本上同时采用的多种测试方法。仪器包括:夹钳式量规,通过双夹钳法测量表面裂纹张口位移(CMOD)和CTOD。应变计阵列,可直接进行J积分测量;和直流电势降(DCPD)仪器,用于补充裂缝尺寸的测量。本文介绍了使用J积分和CTOD生成的延性裂纹扩展阻力曲线的直接比较,其中每种曲线代表不同的实验和分析方法。两种方法在狭窄的裂纹扩展范围内是合理的一致,在开始时略有不同,并且随着裂纹扩展的增加而发散。将来的出版物中将提供对辅助仪器(即应变计,引伸计和DCPD)的分析。

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