首页> 外文会议>ASME Pressure Vessels and Piping Conference >APPLICATION OF A NOVEL CRACK MOUTH OPENING DISPLACEMENT PARTITIONING TECHNIQUE TO CREEP CRACK GROWTH TESTS ON SEN(T) GEOMETRIES OF TYPE 316H STAINLESS STEEL
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APPLICATION OF A NOVEL CRACK MOUTH OPENING DISPLACEMENT PARTITIONING TECHNIQUE TO CREEP CRACK GROWTH TESTS ON SEN(T) GEOMETRIES OF TYPE 316H STAINLESS STEEL

机译:一种新型裂缝口开口位移分配技术在316H不锈钢型(T)几何形状上蠕变裂纹生长试验

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A new technique has recently been proposed to provide improved estimates of the creep contribution to the crack mouth opening displacements (CMOD) and displacement rates during creep crack growth (CCG) tests. This technique employs finite element analysis that incorporates material specific uniaxial tensile test data to simulate crack growth in an experimental test and can account for strain history and creep stress relaxation effects during CCG tests. In this work, this new methodology is applied to analyse the results of a CCG test performed on a relatively low constraint single edge notched tension, SEN(T), geometry. The proportions of the CMOD due to elasticity and plasticity are quantified, and compared to historic, standardised methods of estimating these values. The new method reduces the over estimation of the contribution of plasticity to the CMOD measurement. The impact of this analysis on CCG test results is discussed.
机译:最近提出了一种新技术,以便在蠕变裂纹生长(CCG)测试期间,为裂缝口开口位移(CMOD)和位移率的蠕变贡献提供改进的估计。该技术采用有限的元素分析,该分析包括材料特异性单轴拉伸试验数据,以模拟实验测试中的裂纹生长,并且可以在CCG测试期间考虑应变历史和蠕变应激松弛效应。在这项工作中,应用这种新方法来分析对相对低约束的单边缘缺口张力,森(t),几何形状进行的CCG测试的结果。量化了CMOD引起的比例,并与历史标准化方法进行了量化,并与估计这些值的方法相比。新方法减少了对可塑性对CMOD测量的贡献的估算。讨论了该分析对CCG测试结果的影响。

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