首页> 外文会议>Congress of the International Council of the Aeronautical Sciences; 20060903-08; Hamburg(DE) >INVESTIGATING AND MODELING OF THE MULTI-AXIAL FATIGUE AND COMPLEX DEFORMATIONS OF A NI- BASED SUPERALLOY FOR IMPROVING DISK LIFING
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INVESTIGATING AND MODELING OF THE MULTI-AXIAL FATIGUE AND COMPLEX DEFORMATIONS OF A NI- BASED SUPERALLOY FOR IMPROVING DISK LIFING

机译:镍基超级合金的多轴疲劳和复杂变形的研究与建模

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摘要

The research work in the paper aims to improve turbine disk lifing methodology by enabling viscoplastic constitutive models and utilizing multi-axial fatigue theory. A series of uniaxial and multi-axial (cruciform specimen) LCF tests, therefore, have been conducted under different cyclic loadings at high temperature to investigate the complex deformation and fatigue behaviors for Udimet 720 Li superalloy used in turbine disk. All its deformation behaviors, such as rate dependence, cyclic hardening, fast isotropic softening, mean stress relaxation and creep, are identified and used for viscoplastic modeling. The Bodner-Partom type viscoplastic constitutive model is adopted for that purpose. And it-is modified to improve the modeling of the deformation behaviors, especially the behaviors under asymmetric cyclic loadings and dwell time. The constitutive models are implemented in general purpose FE software ABAQUS through UMAT interface combined with a self-adaptive time stepping strategy. The results show that improvements are very satisfactory. By introducing a factor to consider creep damage effect on LCF, combined with the critical plane theory, a new multi-axial fatigue prediction method is proposed and verified based on the multi-axial fatigue results for different loadings conditions. Meanwhile, four common-used multi-axial fatigue theories are used for the comparisons; the predicted results show that the scatter band is in ±2 times, which are much better than the results by other four theories.
机译:本文的研究工作旨在通过启用粘塑性本构模型并利用多轴疲劳理论来改善涡轮盘的起振方法。因此,已经在高温下不同循环载荷下进行了一系列单轴和多轴(十字形试样)LCF测试,以研究涡轮盘中使用的Udimet 720 Li高温合金的复杂变形和疲劳行为。识别其所有变形行为,例如速率依赖性,循环硬化,快速各向同性软化,平均应力松弛和蠕变,并将其用于粘塑性建模。为此,采用了Bodner-Partom型粘塑性本构模型。并对其进行了修改,以改进变形行为的建模,尤其是在非对称循环载荷和停留时间下的行为。本构模型是通过UMAT界面结合自适应时间步长策略在通用FE软件ABAQUS中实现的。结果表明,改进非常令人满意。通过引入考虑蠕变损伤对LCF影响的因素,结合临界平面理论,提出了一种新的多轴疲劳预测方法,并基于不同载荷条件下的多轴疲劳结果进行了验证。同时,采用了四种常用的多轴疲劳理论进行比较。预测结果表明,散射带为±2倍,远优于其他四种理论的结果。

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