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Stress Intensity Factor and Limit Load Solutions for New Pipe-Ring Specimen with Axial Cracks

机译:具有轴向裂纹的新型管环试样的应力强度因子和极限载荷解

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Pipelines are often designed as thin walled structure, where the standard specimen for fracture toughness testing is difficult to cut. Most critical crack orientation is in axial direction, because the hoop stress is two times higher than radial one. New pipe-ring specimen as ring was proposed for fracture toughness testing. The pipe-ring specimen with through thickness crack was subjected to bending loading. In this case the bending and share stresses occurred in critical pipe-ring sections. In order to ensure transferability between standard and proposed pipe-ring specimen the compendia for stress intensity factor and limit loads for pipe-ring specimens with different crack aspect ratio has been proposed. The results of stress intensity factor and limits load are obtained by using finite element modelling. Specimen's configurations have been modeling with ABAQUS software in order to find SIF and limit load in terms of loading and geometrical conditions
机译:管道通常设计为薄壁结构,难以切割用于断裂韧性测试的标准样品。裂纹的最关键方向是轴向,因为环向应力是径向应力的两倍。提出了新的管环试样作为环,用于断裂韧性测试。具有通孔厚度裂纹的管环试样受到弯曲载荷。在这种情况下,弯曲应力和分担应力会在关键的管环截面中发生。为了确保标准管环样品与建议管环样品之间的可传递性,提出了针对不同裂纹纵横比的管环样品应力强度因子和极限载荷的纲要。应力强度因子和极限载荷的结果是通过有限元建模获得的。样品的配置已使用ABAQUS软件进行建模,以便找到SIF并在载荷和几何条件方面限制载荷

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