首页> 外文会议>ASME Pressure Vessels and Piping Conference >EFFECT OF CONSTRAINT INDUCED BY SPECIMEN GEOMETRIES ON CRACK GROWTH BEHAVIOR UNDER CREEP-FATIGUE INTERACTION
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EFFECT OF CONSTRAINT INDUCED BY SPECIMEN GEOMETRIES ON CRACK GROWTH BEHAVIOR UNDER CREEP-FATIGUE INTERACTION

机译:试样几何诱导对蠕变疲劳相互作用裂纹生长行为影响的影响

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Creep-fatigue interaction would accelerate the crack growth behaviour and change the crack growth mode, which is different from that presenting in pure creep or fatigue regimes. In addition, the constraint ahead of crack tip affects the relationship between crack growth rate and fracture mechanics and thus affects the accuracy of the life prediction for high-temperature components containing defects. In this study, to reveal the role of constraint caused by various specimen geometries in the creep-fatigue regime, five different types of cracked specimens (including C-ring in tension CST, compact tension CT, single notch tension SENT, single notch bend SENB, middle tension MT) were employed. The crack growth and damage evolution behaviours were simulated using finite element method based on a non-linear creep-fatigue interaction damage model considering creep damage, fatigue damage and interaction damage. The expression of (C_t)_(avg) for different specimen geometries were given. Then, the variation of crack growth behaviour with various specimen geometries under creep-fatigue conditions were analysed. CT and CST showed the highest crack growth rates, which were ten times as the lowest crack growth rates in MT. This revealed that distinctions in specimen geometry influenced the in-plane constraint level ahead of crack tip. Furthermore, a load-independent constraint parameter Q~* was introduced to correlate the crack growth rate. The sequence of crack growth rate at a given value of (C_t)_(avg) was same to the reduction of Q~*, which shown a linear relation in log-log curve.
机译:蠕变 - 疲劳相互作用将加速裂缝生长行为并改变裂缝生长模式,这与纯蠕变或疲劳制度的呈现不同。此外,裂缝尖端前的约束会影响裂纹生长速率和骨折力学之间的关系,从而影响含有缺陷的高温成分的寿命预测的准确性。在本研究中,揭示由各种标本几何形状引起的限制的作用,在蠕变 - 疲劳方案中,五种不同类型的裂纹样品(包括张力CT,紧凑的张力CT,单槽张力张力,单凹口弯曲SENB ,中张力MT)被使用。基于非线性蠕变 - 疲劳相互作用损伤模型的有限元法模拟了裂缝生长和损伤进化行为,考虑到蠕变损伤,疲劳损伤和相互作用损伤。给出了不同样品几何形状的(C_T)_(AVG)的表达。然后,分析了在蠕变疲劳条件下具有各种样品几何形状的裂纹生长行为的变化。 CT和CST显示出最高的裂纹生长率,这是MT中最低裂纹增长率的十倍。这表明样品几何形状中的区别影响了裂缝尖端前面内的约束水平。此外,引入了一种无关的约束参数Q〜*以相关的裂缝生长速率。 (C_T)_(AVG)的给定值下的裂纹生长速率的序列与Q〜*的减少相同,其在日志日志曲线中示出了线性关系。

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