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Isothermal Fatigue and Creep-Fatigue Interaction Behavior of Nickel-Base Directionally Solidified Superalloy

机译:镍基方向固化超合金的等温疲劳和蠕变 - 疲劳相互作用行为

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摘要

The creep-fatigue interaction in directionally solidified nickel-base superalloy was analyzed with the modified Chaboche-based unified viscoplasticity constitutive model. The model features the anisotropic material behavior, hardening/softening, and stress relaxation. Simple low-cyclic fatigue and specified hold time experiments were conducted on a directionally solidified superalloy (DZ125) at temperatures over 760A degrees C. The material parameters were optimized considering its tensile, cyclic and creep behavior with the Levenberg-Marquardt optimization procedure. The model was constructed in FORTRAN and integrated in FEA software UMAT/ABAQUS. The results show that experimental and simulated hysteresis loop size/shape, peak stresses, stress relaxation, and related areas are closely matched. The modified constitutive model was found to be instrumental for revealing the fatigue and creep-fatigue interaction behavior of such materials and can be used for practical applications.
机译:用改良的Chaboche统一粘合性构成型模型分析了定向凝固的镍基超合金中的蠕变 - 疲劳相互作用。 该模型具有各向异性材料行为,硬化/软化和应力松弛。 在760A℃的温度下,在方向固化的超合金(DZ125)上进行简单的低循环疲劳和指定保持时间实验。通过利用Levenberg-Marquardt优化程序,考虑其拉伸,循环和蠕变行为来优化材料参数。 该模型是在Fortran构建的,并集成在FEA软件UMAT / ABAQUS中。 结果表明,实验和模拟滞后回路尺寸/形状,峰值应力,应力松弛和相关区域紧密匹配。 发现改进的本构模型是揭示这种材料的疲劳和蠕变疲劳相互作用行为的仪器,可用于实际应用。

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