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Fatigue and Fracture Behaviors of Nickel-Based Forging GH4169 Superalloy and Optimization of Model Parameters

机译:基于镍的锻造GH4169高温合金与模型参数优化的疲劳和断裂行为

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The aim of this paper was to identify the high-temperature low-cycle fatigue (HTLCF) performances and optimize model parameters of nickel-based GH4169 superalloy. Microanalysis revealed that fatigue lives of specimens obtained from different regions of inhomogeneous radical forging disc were determined by their microstructures, such as the uniformity ratio of grain size and the distribution of 8 phase along the grain boundary. Typical fatigue characteristics of all specimens were investigated after HTLCF tests through the analysis on fracture morphologies and secondary cracks. Then, an evolution and optimization process of model parameters in e-N curves was proposed.
机译:本文的目的是鉴定高温低循环疲劳(HTLCF)性能,优化基于镍GH4169超合金的模型参数。微明显揭示了从不均匀的自由基锻造盘的不同区域获得的标本的疲劳寿命由其微观结构确定,例如粒度的均匀性比和沿晶界的8相的分布。通过分析骨折形态和二次裂缝,研究了HTLCF试验后研究了所有标本的典型疲劳特性。然后,提出了E-N曲线中模型参数的演化和优化过程。

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