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The role of interfacial and loss function of model adhesives on their adhesion to glass

机译:模型胶粘剂的界面和损失功能对玻璃的粘附力

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摘要

The measurement of adhesion and the evaluation of influencing factors are of great scientific and technological importance. There are two distinct viewpoints on adhesion: (i) surface chemistry, and (ii) fracture mechanics. For elucidation of the relative importance of mechanical properties in the bonding of adhesives, the strength of adhesion between model adhesives and glass plates were measured by the wedge cleavage (WC) test method. Copolymers of methyl methacrylate (MMA) with n-butyl acrylate (nBA) and methyl methacrylate with styrene (S) were prepared as model adhesives. The results show that in MMA-nBA copolymers, by increasing the amount of nBA, both the loss function and the adhesion energy of the adhesives increase. However, by increasing the amount of nBA above a certain level, the adhesion strength behins to decrease. In this situation, the cohesive strength of the adhesive dominates the failure mechanism. On the other hand, a decrease in adhesion was expected upon increasing the amount of styrene in the poly(styrene-co-methyl methacrylate) adhesive, because methyl methacrylate, an interactive monomer with glass, is replaced by a non-interacting styrene monomer, while the loss function of the adhesive is almost constant. But our practical adhesion measurement technique was not sensitive enough to detect this adhesion Joss.
机译:粘附力的测量和影响因素的评估具有重大的科学技术意义。关于粘合,有两种不同的观点:(i)表面化学和(ii)断裂力学。为了阐明机械性能在胶粘剂粘合中的相对重要性,通过楔形劈裂(WC)测试方法测量了模型胶粘剂与玻璃板之间的粘合强度。制备甲基丙烯酸甲酯(MMA)与丙烯酸正丁酯(nBA)和甲基丙烯酸甲酯与苯乙烯(S)的共聚物作为模型粘合剂。结果表明,在MMA-nBA共聚物中,通过增加nBA的量,粘合剂的损失功能和粘附能均增加。但是,通过将nBA的量增加到一定水平以上,粘合强度降低。在这种情况下,粘合剂的内聚强度决定了失效机理。另一方面,随着聚(苯乙烯-共-甲基丙烯酸甲酯)粘合剂中苯乙烯含量的增加,预计粘合力会降低,这是因为与玻璃相互作用的甲基丙烯酸甲酯被非相互作用的苯乙烯单体所取代,而粘合剂的损失功能几乎是恒定的。但是我们实用的粘合力测量技术不够灵敏,无法检测到这种粘合力。

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