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首页> 外文期刊>Journal of Zhejiang University. Science, A >Fatigue and fracture behavior of nickel-based superalloy Inconel 718 up to the very high cycle regime
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Fatigue and fracture behavior of nickel-based superalloy Inconel 718 up to the very high cycle regime

机译:基于镍的超合金inconel 718到非常高的循环状态的疲劳和断裂行为

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The fatigue and fracture behavior of nickel-based superalloy Inconel 718 was investigated up to the very high cycle regime under rotary bending tests at room temperature. It was found that this superalloy can still fracture after exceeding 107 cycles. Fractographic analysis revealed that there was a transition from fatigue crack initiation at multi-sites to single initiation with decreasing stress levels. The fracture surface can be divided into four areas according to the appearance, associated with fracture mechanics analysis of the corresponding stress intensity factors. The fracture mechanism dominant in each area was disclosed by scanning electron microscope examination and analyzed in comparison with those obtained from the crack growth tests. Subsequently, life prediction modeling was proposed by estimating the crack initiation and propagation stage respectively. It was found that Chan (2003)’s model for initiation life and the Paris law for growth life can provide comparable predictions against the experimental life.
机译:在室温下在旋转弯曲试验下,研究了基于镍的超合金inconel718的疲劳和断裂行为。发现该超合金仍然可以在超过107个循环后裂缝。 Fretography分析表明,在多部位疲劳裂纹引发到单一启动的过渡,随着胁迫水平降低。断裂表面可根据外观分成四个区域,与相应的应力强度因子的断裂力学分析相关。通过扫描电子显微镜检查公开了每个区域中显着的裂缝机制,并与从裂纹生长试验中获得的那些进行分析。随后,通过分别估计裂纹起始和传播阶段来提出寿命预测建模。有人发现,陈(2003年)的启动寿命模型和生长生长的巴黎法律可以提供对实验生活的可比预测。

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