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Numerical Limit Load Analysis of 3D Pressure Vessel with Volume Defect Considering Creep Damage Behavior

机译:考虑蠕变损伤行为的具有体积缺陷的3D压力容器的极限载荷分析

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The limit load of 3D 2.25Cr-1Mo steel pressure vessel structures with volume defect at 873 K is numerically investigated in the present paper, and limit load under high temperature is defined as the load-carrying capacity after the structure serviced for a certain time. The Norton creep behavior with Kachanov-Robotnov damage law is implemented in ABAQUS with CREEP subroutine and USDFLD subroutine. Effect of dwell time to the material degradation of 2.25Cr-1Mo steel has been considered in this paper. 190 examples for the different sizes of volume defects of pressure vessels have been calculated. Numerical results showed the feasibility of the present numerical approach. It is found that the failure mode of the pressure vessel depends on the size of the volume defect and the service life of the pressure vessel structure at high temperature depends on the defect ratio seriously.
机译:数值研究了体积缺陷为873 K的3D 2.25Cr-1Mo钢制压力容器结构的极限载荷,将高温下的极限载荷定义为该结构服役一定时间后的承载能力。具有Kachanov-Robotnov损伤定律的诺顿蠕变行为在ABAQUS中使用CREEP子例程和USDFLD子例程实现。本文研究了停留时间对2.25Cr-1Mo钢材料降解的影响。计算了190个不同大小的压力容器体积缺陷的示例。数值结果表明了该数值方法的可行性。发现压力容器的失效模式取决于体积缺陷的大小,高温下压力容器结构的使用寿命严重依赖于缺陷率。

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