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Estimation procedure of J-resistance curves for SE(T) fracture specimens using unloading compliance

机译:利用卸​​载顺应性估算SE(T)断裂试样的J阻力曲线

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This work provides an estimation procedure to determine J-resistance curves for pin-loaded and clamped SE(T) frac-ture specimens using the unloading compliance technique and the eta-method. A summary of the methodology upon which J and crack extension are derived sets the necessary framework to determine crack resistance data from the measured load vs. displacement curves. The extensive plane-strain analyses enable numerical estimates of the nondimensional compliance, mu, and parameters eta and gamma for a wide range of specimen geometries and material properties characteristic of structural and pipeline steels. Laboratory testing of an API 5L X60 steel at room temperature using pin-loaded SE(T) specimens with side-grooves provide the load-displacement data needed to validate the estimation procedure for measuring the crack growth resistance curve for the material. The results presented here produce a representative set of solutions which lend further support to develop standard test procedures for constraint-designed SE(T) specimens applicable in measurements of crack growth resistance for pipelines.
机译:这项工作提供了一种估计程序,该程序使用卸载顺应技术和eta方法确定针加载和夹紧的SE(T)断裂试样的J电阻曲线。得出J和裂纹扩展的方法的摘要设置了必要的框架,可以根据测得的载荷与位移曲线确定抗裂性数据。广泛的平面应变分析可对各种尺寸的试样几何尺寸以及结构钢和管道钢的材料性能特征进行无量纲依从性,mu和参数eta和gamma的数值估算。使用带有侧面沟槽的销钉SE(T)样品在室温下对API 5L X60钢进行实验室测试,可提供所需的载荷-位移数据,以验证用于测量材料的抗裂纹扩展曲线的估算程序。本文介绍的结果提供了一套具有代表性的解决方案,这些解决方案进一步支持了开发约束设计SE(T)标本的标准测试程序,这些标本可用于测量管道的抗裂纹扩展性。

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