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A modified time-dependent failure assessment diagram for cracks in mismatched welds at high temperatures

机译:高温下失配焊缝裂纹的修正的随时间变化的失效评估图

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In this work, the case of cracks located in a weld with mismatched creep properties from that of the surrounding base material is addressed. A weighted-average method for both over- and undermatched creep performance of the weld and base materials is presented, and an equivalent isochronous stress-strain curve (EISSC) is then defined. Accordingly, a time-dependent failure assessment curve is constructed using the method of R6 Option 2. This curve now depends not only on the mechanical properties of both weld and base materials but also on the weld geometry and crack size. The application of such an approach to an internal, circumferentially defected welded cylinder under axial tension has been studied. Results indicate that the dependence of the modified time-dependent failure assessment curves (TDFACs) on the geometry, crack size and service time is not significant and nearly collapses into one curve. The general failure assessment curve from isochronous data of austenitic steel, proposed by Ainsworth, is non-conservative for some cases and thus may not be applicable for Cr-Mo steel.
机译:在这项工作中,解决了裂纹在焊缝中具有与周围基础材料不匹配的蠕变特性的情况。提出了一种针对焊接和基础材料蠕变性能过高和不匹配的加权平均方法,然后定义了等效等时应力-应变曲线(EISSC)。因此,使用R6选项2的方法构建了随时间变化的失效评估曲线。该曲线现在不仅取决于焊缝和基础材料的机械性能,而且取决于焊缝的几何形状和裂纹尺寸。研究了这种方法在轴向张力下对内部圆周缺陷焊接气缸的应用。结果表明,修改后的随时间变化的失效评估曲线(TDFAC)对几何形状,裂纹尺寸和使用时间的依赖性不显着,几乎塌陷为一条曲线。 Ainsworth提出的基于奥氏体钢等时数据的一般失效评估曲线在某些情况下是非保守的,因此可能不适用于Cr-Mo钢。

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