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Enhancement of interfacial adhesion between polypropylene and nylon 6: Effect of surface functionalization by low-energy ion-beam irradiation

机译:增强聚丙烯与尼龙之间的界面粘合力6:低能离子束辐照对表面功能化的影响

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The effect of surface functionalization on the interfacial adhesion between two immiscible semicrystalline polymers, polypropylene (PP) and a polyamide (nylon 6, Ny6)), was investigated. The surface of PP was functionalized by a low-energy ion-beam-assisted gas reaction. Surface functional groups containing carboxyl and carbonyl groups created remarkably different interactions at the interface. Fracture toughness was measured using an asymmetric double cantilever beam test (ADCB). The calculated fracture toughness was significantly increased for the functionalized PP case. The system with reactive oxygen gas added showed a higher fracture toughness than the case with only argon-ion-beam irradiation because of more reactions and/or interactions between the functionalized PP surface and Ny6. Analysis on the locus of failure by using scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS) revealed that the fracture toughness between PP and Ny6 was influenced not only by the bonding temperature but also by the bonding time at constant bonding temperature. The fracture toughness increased after some induction time of annealing; then, it reached a plateau value. The fracture toughness increased with the bonding temperature, showed a maximum at 200 degreesC, and then decreased at a higher temperature of 210 degreesC. This behavior is different from other reported results. The present system is more or less like a chain tethered to a solid surface. The failure was caused by the weaker of the adhesive strength or the cohesive strength. The effect of bonding temperature is attributed to the cohesive failure in the PP phase. The adhesive strength increased with the bonding temperature while the cohesive strength decreased with the bonding temperature because of less entanglement of reacted chains with the other chains in the bulk. The dependence of the fracture toughness on the bonding time was explained in terms of this fracture mechanism. [References: 44]
机译:研究了表面官能化对两种不混溶的半结晶聚合物(聚丙烯(PP)和聚酰胺(尼龙6,Ny6))之间的界面粘合的影响。 PP表面通过低能离子束辅助气体反应进行功能化。含有羧基和羰基的表面官能团在界面处产生明显不同的相互作用。使用不对称双悬臂梁测试(ADCB)测量断裂韧性。对于功能化PP案例,计算出的断裂韧性得到了显着提高。与仅使用氩离子束辐照的情况相比,添加了活性氧气的系统显示出更高的断裂韧性,这是因为官能化的PP表面与Ny6之间发生了更多的反应和/或相互作用。通过扫描电子显微镜(SEM)和X射线光电子能谱(XPS)分析失效的部位,发现PP和Ny6之间的断裂韧性不仅受键合温度的影响,还受恒定键合温度下键合时间的影响。 。经过一段时间的退火后,断裂韧性增加;然后,它达到了稳定值。断裂韧性随着接合温度的增加而增加,在200℃下显示最大值,然后在210℃的较高温度下降低。此行为与其他报告的结果不同。本系统或多或少像拴在固体表面上的链。失败是由于粘合强度或内聚强度较弱引起的。粘合温度的影响归因于PP相中的内聚破坏。粘合强度随粘合温度而增加,而内聚强度随粘合温度而降低,这是因为反应后的链与本体中其他链的缠结较少。通过这种断裂机理解释了断裂韧性对粘结时间的依赖性。 [参考:44]

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