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首页> 外文期刊>International Journal of Pressure Vessels and Piping >A numerical model to simulate ductile tearing-creep crack growth interaction
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A numerical model to simulate ductile tearing-creep crack growth interaction

机译:模拟韧性撕裂蠕变裂纹裂纹互动的数值模型

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摘要

Ductile tearing and creep crack growth are generally treated independently but there are situations in which they can occur simultaneously. First, creep crack growth calculations in components are often continued to large defect sizes in order to determine when limiting conditions for short-term fracture are reached. Secondly, in order to obtain data in reasonable timescales, experimental creep crack growth tests are often performed at high loads such that plasticity occurs in the tests, particularly as the crack grows to larger sizes. This paper presents a numerical model to simulate the interaction of ductile tearing and creep crack growth to address such cases. A strain-based damage model is introduced with total damage assumed to be the linear summation of creep and plastic damage. The model is applied to Type 316H stainless steel at 550 degrees C with the parameters in the damage model determined from tensile, creep and fracture toughness test data. Predictions using the proposed model are then compared with notched creep tensile and creep crack growth test results and shown to be in good agreement with experimental measurements of creep deformation and crack growth.
机译:延展性撕裂和蠕变裂纹生长通常是独立的处理,但存在它们可以同时发生的情况。首先,蠕变裂纹增长在组件中的裂纹裂缝计算通常持续到大缺陷尺寸,以确定何时达到短期骨折的限制条件。其次,为了以合理的时间尺度获得数据,实验蠕变裂纹生长试验通常在高负荷下进行,使得在测试中发生可塑性,特别是随着裂缝的增长,以较大的尺寸。本文提出了一种数值模型,用于模拟延展性撕裂和蠕变裂纹增长的相互作用来解决此类病例。介绍基于应变的损伤模型,具有蠕变和塑料损坏的线性求和。该模型应用于550℃的316H不锈钢,在损伤模型中的参数,从拉伸,蠕变和断裂韧性测试数据中确定。然后将使用所提出的模型的预测与缺口蠕变拉伸和蠕变裂纹生长试验结果进行比较,并与蠕变变形和裂纹生长的实验测量结果吻合良好。

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