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Modeling Cathodic Weakening of Rubber/Steel Adhesive Bonds as Liquid-Solid Reactions

机译:橡胶/钢胶粘剂的阴极弱化模拟为液固反应

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摘要

In order to predict the loss of adhesion in adhesive bonded joints under cathodic conditions, empirical and semi-empirical approaches were previously implemented by Hamade and coworkers. In this paper, a method is presented to estimate bond weakening progress via numerical simulations after being modeled as a liquid-solid chemical reactor. The diffusion and chemical reaction mechanisms involved in bond weakening are mathematically represented via a simplified, 2 partial differential equations (p.d.e.) boundary value problem (BVP) which is a reduced version of the more complex electrochemical formulation needed to fully describe the chemistry at the bondline under cathodic conditions. The model presented is analytical/empirical hybrid formulation solvable by numerical methods and is made possible by the empirical knowledge developed previously by Hamade and coworkers regarding the dependence of the diffusion and chemical reaction parameters on cathodic conditions. The findings support that weakening is governed by a chemical reaction-controlled mechanism at relatively short distances and by a diffusion-controlled mechanism as the degraded front propagates. The numerical model is validated using experimental weakening data collected previously. The numerical solutions provide estimates of the life of the bonded joint (weakened length vs. time) as function of cathodic parameters.
机译:为了预测在阴极条件下胶接接头的粘合力损失,Hamade及其同事先前采用了经验和半经验方法。在本文中,提出了一种在建模为液-固化学反应器后,通过数值模拟估算键减弱过程的方法。通过简化的2个偏微分方程(pde)边界值问题(BVP),数学上表示了键弱化中涉及的扩散和化学反应机理,这是更复杂的电化学配方的简化版本,可用来全面描述粘合线上的化学反应在阴极条件下。提出的模型是可以通过数值方法解决的分析/经验混合公式,并且由Hamade及其同事先前开发的有关扩散和化学反应参数对阴极条件的依赖性的经验知识而成为可能。这些发现支持弱化是由化学反应控制的机制在相对短的距离处控制,并且由扩散控制的机制控制降解前锋的传播。使用先前收集的实验弱化数据验证了数值模型。数值解提供了作为阴极参数的函数的结合点寿命的估计(长度相对于时间的减小)。

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