首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >DAMAGE EVALUATION OF GRADE 91 THICK CYLINDER UNDER VARIABLE THERMAL CYCLIC LOADING USING CONTINUUM DAMAGE COUPLED VISCOPLASTIC MODELS
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DAMAGE EVALUATION OF GRADE 91 THICK CYLINDER UNDER VARIABLE THERMAL CYCLIC LOADING USING CONTINUUM DAMAGE COUPLED VISCOPLASTIC MODELS

机译:使用连续函数耦合粘液模型可变热循环载荷下91级厚圆筒的损伤评估

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This study evaluates creep-fatigue damage in the modified Grade 91 thick-cylinder tested by Japan Atomic Energy Agency (JAEA), to understand the failure mechanism of critical components of Fast Reactor nuclear plants. As modified Grade 91 demonstrated creep-fatigue interaction induced failure mechanisms, finite element analysis of high-temperature components will require a unified constitutive model (UCM) that can simulate various creep-fatigue responses with reasonable accuracy. Hence, a UCM coupled with various advanced modeling features including the continuum damage modeling features is investigated to demonstrate their predictability of the fatigue, creep and creep-fatigue responses of the modified Grade 91 steel. The modified UCM is implemented into ABAQUS for analysis of creep deformation in the thick cylinder benchmark problem. Finite element analysis results are presented to demonstrate how the thermal cycling influences the creep-deformation of this high-temperature component. It is also demonstrated how thermal cycling's influence on fatigue life can be determined based on the damage variable incorporated in the UCM.
机译:本研究评估日本原子能机构(JAEA)测试的改性级91厚缸中的蠕变 - 疲劳损坏,了解快速反应堆核植物的关键组分的失效机制。由于改性等级91示出了蠕变 - 疲劳相互作用诱导的故障机制,高温分量的有限元分析将需要统一的本构模型(UCM),其可以以合理的精度模拟各种蠕变疲劳响应。因此,研究了与各种高级建模特征的UCM,包括连续损伤建模特征,以证明改性等级91钢的疲劳,蠕变和蠕变反应的可预测性。修改的UCM实施到ABAQUS中,以分析厚缸基准问题中的蠕变变形。提出有限元分析结果以证明热循环如何影响该高温成分的蠕变变形。还可以证明如何基于在UCM中结合的损伤变量来确定热循环对疲劳寿命的影响。

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