A Probabilistic Approach to the Modeling of Fatigue in Gamma-Based Titanium Aluminides

J. Lou, W. Shen, W. Soboyejo
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Abstract

This paper presents a statistical framework for the modeling of fatigue in gamma-based titanium aluminide intermetallics. Following an initial description of the physics of fatigue crack growth, a deterministic fracture mechanics model is presented for the estimation approaches are of fatigue life. This is used as a basis for the development of a probabilistic model for the estimation of fatigue life due to variabilities in the initial flow size. The predicted variabilities are compared with measured variabilities from multiple fatigue life experiments performed on three cast lamellar gamma alloys. The implications of the results are then discussed for the estimation of material reliability in gamma-based titanium aluminide intermetallics.
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基于γ基钛铝合金疲劳建模的概率方法
本文提出了一种基于γ基铝化钛金属间化合物疲劳模型的统计框架。在对疲劳裂纹扩展的物理特性进行初步描述的基础上,提出了疲劳寿命估算方法的确定性断裂力学模型。这被用作开发一个概率模型的基础,用于估计由于初始流动尺寸变化而导致的疲劳寿命。通过对三种铸造层状γ合金进行多次疲劳寿命试验,将预测变量与实测变量进行了比较。然后讨论了结果对γ基铝化钛金属间化合物材料可靠性估计的影响。
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