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A kinetic approach to study the hydrolytic stability of polymer-metal adhesion

机译:一种研究聚合物 - 金属粘附水解稳定性的动力学方法

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摘要

A polystyrene-aluminum joint, the adhesion of which was promoted by a silane coupling agent, was examined by fracturing the interface under water at different loads and temperatures. X-ray photoelectron spectroscopy (XPS) analysis of te fractured surface showed that the locus of failure was mainly interfacial at low loads, but it gradually moves away from the interface at higher loads. This movement of the failure locus reflects a transition of the mechanism of interfacial de-bonding from the hydrolysis of the siloxane bonds to the cleavage of the amin polymer chains. A rate-dependent bond failure model qualitatively describes the above process, in which the activation energy of bond dissciation is assumed to be a time-dependent parameter.
机译:通过在不同载荷和温度下在水下破裂界面来检查由硅烷偶联剂促进的聚苯乙烯 - 铝接头。 TE裂缝表面的X射线光电子能谱(XPS)分析显示故障原点主要在低负荷下界面,但它逐渐远离较高负载的界面。 失效轨迹的这种运动反映了从硅氧烷键的水解与氨基聚合物链的裂解的界面去粘合机制的转变。 速率相关的债券失败模型定性地描述了上述过程,其中假设粘合溶解的激活能量是时间依赖的参数。

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