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Moisture Attack on Adhesive Joints: Roles of Adhesive and Interface Properties

机译:湿气对粘合剂接头的侵蚀:粘合剂和界面特性的作用

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It is well-known that moisture attacks the interfacial bonds within an adhesive joint. A particularly interesting observation is that when the moisture level in certain systems exceeds a critical concentration, the bonded joint shows a dramatic loss of strength. A number of authors have investigated this phenomenon and concluded that the interface plays a crucial role but have not been able to explain why there is a critical concentration of moisture or what role is played by the properties of the bulk adhesive. Other researchers have shown that the concentration of water near the interface can be quite different than that in the bulk adhesive. If the interface is crucial to the observed effect, the local water content should be very important. To gain a clearer picture of what controls this phenomenon, we have combined a fracture mechanics approach to determine joint strength with neutron reflectivity which provides a detailed characterization of the moisture distribution near the interface. The work uses silicon dioxide substrates bonded to a series of polymers based on poly(n-alkyl methyl methacrylate). By substituting different alkyl groups, the molecular structure of the polymer can be systematically changed to vary the chemical and physical properties over a wide range. The results in this study suggest that the loss of adhesion is dependent on a combination of local water concentration near the interface, swelling stresses resulting from the water absorption, and water induced weakening of the interface bonds.
机译:众所周知,水分会侵蚀粘合接头内的界面键。一个特别有趣的观察结果是,当某些系统中的水分含量超过临界浓度时,粘结接头会显示出明显的强度损失。许多作者已经研究了这种现象,并得出结论,界面起着至关重要的作用,但无法解释为什么水分会达到临界浓度,或者散装胶的性能起着怎样的作用。其他研究人员表明,界面附近的水浓度与散装粘合剂中的水浓度可能有很大不同。如果界面对观察到的效果至关重要,则局部含水量将非常重要。为了更清楚地了解是什么控制了这种现象,我们结合了断裂力学方法来确定接头强度和中子反射率,从而提供了界面附近水分分布的详细特征。这项工作使用了二氧化硅基材,该基材粘结到了一系列基于聚(甲基丙烯酸正烷基甲酯)的聚合物上。通过取代不同的烷基,可以系统地改变聚合物的分子结构,从而在很宽的范围内改变化学和物理性质。这项研究的结果表明,附着力的丧失取决于界面附近的局部水浓度,吸水导致的溶胀应力以及水引起的界面键弱化。

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