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Low cycle fatigue modeling for nickel-based single crystal superalloy

机译:基于镍的单晶高温合金的低循环疲劳模型

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The low cycle fatigue (LCF) characteristics of nickel-based single crystal (SC) superalloy have been experimentally and numerically investigated. The effects of crystallographic orientation, load ratio and stress concentration are studied. In order to model the effect of crystallographic orientation, a new orientation factor, which is relevant to the yield strength, is constructed. On the other hand, a new asymmetrical loading factor is introduced to describe the effect of load ratio. The LCF model for SC superalloy smooth specimen is established with these new damage parameters. The effect of the strain gradient on the LCF life of SC superalloy is further studied, which is applied to the evaluation of the LCF life of SC superalloy notched specimen. The LCF model proposed is validated by the experimental data of SC superalloy DD3 and PWA1480.
机译:基于镍的单晶(SC)超合金的低循环疲劳(LCF)特性已经在实验上和数值上研究。 研究了晶体取向,负荷比和应力浓度的影响。 为了模拟晶体取向的效果,构建了与屈服强度相关的新取向因子。 另一方面,引入了新的不对称装载因子来描述负荷比的效果。 使用这些新的损伤参数建立了SC超合金平滑样品的LCF模型。 进一步研究了应变梯度对SC超合金的LCF寿命的影响,其应用于SC超合金缺口样品的LCF寿命的评价。 所提出的LCF模型由SC超合金DD3和PWA1480的实验数据验证。

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