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An evaluation of creep rupture strength of ferritic/austenitic dissimilar weld interfaces using cohesive zone modelling

机译:用粘性区造型评价铁素体/奥氏体不同焊接界面的蠕变破裂强度

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Dissimilar metal welds between ferritic and austenitic alloys are used extensively in power generation plants. Failure of such welds can occur in the base metal, the heat-affected zone (HAZ), or the interface between the two materials, depending on the operating stress and temperature. Evaluation of the creep rupture properties of dissimilar weld joints of 2.25Cr-1Mo (P22) and 9Cr-1MoVNb (P91) ferritic steels with INCONEL 82 filler metal are described, with the primary focus on failure at the interface. The interface is modelled as a cohesive, or interface, zone within a finite element (FE) analysis. A Kachanov-type damage accumulation law is implemented to describe the response within the interface element, with the material parameters calibrated against available experimental data. The relationship between the damage mechanics model and the major microstructural features that are responsible for failure, is discussed.
机译:铁素体和奥氏体合金之间的不同金属焊缝广泛用于发电厂。这种焊缝的失效可能发生在基础金属中,热影响区域(HAZ)或两种材料之间的界面,这取决于操作应力和温度。描述了2.25Cr-1Mo(P22)和9Cr-1MoVNB(P91)铁素体钢的不同焊接接头的蠕变破裂性能的评价,其中具有82个填充金属的填充金属,主要关注界面的故障。该界面被建模为有限元(FE)分析中的凝聚力或接口区域。实施了kachanov型损伤累积定律以描述接口元件内的响应,其材料参数校准可用的实验数据。讨论了损伤力学模型与失败负责的主要微观结构特征之间的关系。

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