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Creep damage analysis of simulated-HAZ notched bar specimens of modified 9Cr-1Mo steel

机译:改性9Cr-1Mo钢的模拟HAZ缺口试件的蠕变损伤分析。

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From the standpoint of evaluating Type IV creep damage in the fine-grained heat affected zones (FGHAZ) of welded joints, an analysis method combining continuum damage mechanics (CDM) and a cavity nucleation model is proposed and applied to the creep testing of simulated-FGHAZ notched bars of mod. 9Cr-1Mo steel at 650°C. The Perrin-Hayhurst CDM model is adopted, which considers both softening by precipitate coarsening and damage by creep cavities. For the cavity nucleation model, a proposal by Gonzalez and Cocks is employed, which considers the randomness of grain-boundary-facet orientations in a polycrystalline material and gives a nucleation rate that is a function of the creep strain rate and a tri-axiality factor. The critical value of the damage parameter, corresponding to the initiation of micro cracks due to the coalescence of creep cavities, is expressed in terms of a critical value of the number density of creep cavities as determined from grain-boundary-resistance model simulations by the present authors. Creep rupture experiments have been conducted for circumferentially notched bar specimens with two kinds of notch acuities. The applicability of the combined CDM and cavity nucleation model is demonstrated by comparing the distribution of creep cavities observed experimentally with the simulation results. The final rupture life of the circumferentially notched bar specimens was also predicted to within a factor of two.
机译:从评估焊接接头细颗粒热影响区(FGHAZ)中的IV型蠕变损伤的角度出发,提出了一种结合连续损伤力学(CDM)和腔形核模型的分析方法,并将其应用于模拟试件的蠕变测试中FGHAZ模切缺口条。 650°C下的9Cr-1Mo钢。采用了Perrin-Hayhurst CDM模型,该模型同时考虑了由于析出物粗化而引起的软化和因蠕变腔而造成的破坏。对于腔体成核模型,采用了Gonzalez和Cocks的建议,该建议考虑了多晶材料中晶界面取向的随机性,并给出了成核率,该成核率是蠕变应变率和三轴因子的函数。 。损伤参数的临界值,对应于由于蠕变腔的聚结而引起的微裂纹的萌发,用蠕变腔的数量密度的临界值表示,该临界值是通过抗晶界阻力模型模拟确定的。现任作者。已经对具有两种缺口锐度的周向缺口条形试样进行了蠕变断裂实验。通过将实验观察到的蠕变腔的分布与仿真结果进行比较,证明了CDM和腔体成核模型的组合的适用性。还预测了带圆周切口的条形试样的最终断裂寿命在两倍以内。

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