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A viscoplastic study of crack-tip deformation and crack growth in a nickel-based superalloy at elevated temperature

机译:高温下镍基高温合金裂纹尖端变形和裂纹扩展的粘塑性研究

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摘要

Viscoplastic crack-tip deformation behaviour in a nickel-based superalloy at elevated temperature has been studied for both stationary and growing cracks in a compact tension (CT) specimen using the finite element method. The material behaviour was described by a unified viscoplastic constitutive model with non-linear kinematic and isotropic hardening rules, and implemented in the finite element software ABAQUS via a user-defined material subroutine (UMAT). Finite element analyses for stationary cracks showed distinctive strain ratchetting behaviour near the crack tip at selected load ratios, leading to progressive accumulation of tensile strain normal to the crack-growth plane. Results also showed that low frequencies and superimposed hold periods at peak loads significantly enhanced strain accumulation at crack tip. Finite element simulation of crack growth was carried out under a constant ΔK-controlled loading condition, again ratchetting was observed ahead of the crack tip, similar to that for stationary cracks. A crack-growth criterion based on strain accumulation is proposed where a crack is assumed to grow when the accumulated strain ahead of the crack tip reaches a critical value over a characteristic distance. The criterion has been utilized in the prediction of crack-growth rates in a CT specimen at selected loading ranges, frequencies and dwell periods, and the predictions were compared with the experimental results. Keywords: Viscoplastic material; Crack mechanics; Finite elements; Ratchetting; Strain accumulation
机译:对于镍基高温合金,在高温下的粘塑性裂纹尖端变形行为,已经通过有限元方法研究了紧凑张力(CT)试样中的固定裂纹和正在扩展的裂纹。材料行为由具有非线性运动学和各向同性硬化规则的统一粘塑性本构模型描述,并通过用户定义的材料子例程(UMAT)在有限元软件ABAQUS中实现。固定裂纹的有限元分析表明,在选定的载荷比下,靠近裂纹尖端的应变明显不稳,导致垂直于裂纹扩展平面的拉伸应变逐渐累积。结果还表明,低频和峰值载荷下的保持时间重叠会显着增强裂纹尖端处的应变累积。在恒定的ΔK控制的载荷条件下进行了裂纹扩展的有限元模拟,类似于固定裂纹,在裂纹尖端之前再次观察到了裂谷现象。提出了基于应变累积的裂纹增长准则,其中当裂纹尖端之前的累积应变在特征距离上达到临界值时,假定裂纹会扩展。该标准已用于预测在选定载荷范围,频率和保压周期下CT试样的裂纹扩展速率,并将该预测值与实验结果进行了比较。关键字:粘塑性材料;裂纹力学;有限元;盗窃应变积累

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  • 作者

    Zhao, Liguo; Tong, Jie;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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