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A probability-based model for growth of corrosion pits in aluminium alloys

机译:基于概率的铝合金腐蚀点生长模型

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Probabilistic growth characteristics of corrosion pits originating from particle clusters present in aluminium alloys is studied in this paper. Towards this, a mechanically driven model, which includes corrosive environment and fatigue load as driving forces, incorporated within a probabilistic framework is proposed and used. Corrosive environment is modelled using related electrochemical variables and temperature while the effect of fatigue load is incorporated by modelling the pits to attain the shape of a prolate spheroid on growth. Discrete probability of particle cluster formation is combined with the pit growth characteristics, which is described in continuous sense, by using the 'Law of total probability'. Studies conducted using Monte Carlo simulation technique and linear elastic fracture mechanics principles demonstrate the capability of the model to predict an enhanced growth rate of pits under the influence of fatigue load.
机译:研究了铝合金中存在的颗粒团簇引起的腐蚀坑的概率增长特性。为此,提出并使用了一种机械驱动模型,该模型将腐蚀环境和疲劳载荷作为驱动力,并纳入了概率框架。使用相关的电化学变量和温度对腐蚀环境进行建模,同时通过对凹坑进行建模以获取长球形的形状来吸收疲劳载荷的影响。通过使用“总概率定律”,将颗粒簇形成的离散概率与凹坑生长特性(在连续意义上进行描述)相结合。使用蒙特卡洛模拟技术和线性弹性断裂力学原理进行的研究表明,该模型能够预测疲劳载荷影响下的点蚀增长率。

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