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首页> 外文期刊>International Journal of Adhesion & Adhesives >Correlation of optically stimulated electron emission with failure mode of adhesively bonded epoxy composites
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Correlation of optically stimulated electron emission with failure mode of adhesively bonded epoxy composites

机译:光学刺激电子发射与粘合粘结环氧复合材料的故障模式的相关性

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摘要

Carbon fiber reinforced polymers (CFRP) reduce weight in aerospace and automotive applications while maintaining or improving structural performance. Additional performance gains can be realized with composites if adhesive bonding is used in place of mechanical fasteners for structural assemblies. Surface preparation for adhesive bonding plays a critical role in the assembly process. Effective techniques for monitoring the pre-bonding surface conditions are crucial to obtain surfaces free from bond-degrading contaminants, e.g. mold release agents, which are widely used in CFRP manufacturing. In this work, optically stimulated electron emission (OSEE) was used prior to and after laser ablation to measure deposited levels of polydimethylsiloxane (PDMS) on CFRP (Torayca P2302-19). OSEE was also used to model the contamination layer thickness. After the specimens were adhesively bonded with a modified epoxy film adhesive (Loctite EA 9696 Aero), they were subjected to double cantilever beam (DCB) tests to investigate the hypothesis that surface contamination species and levels affect the fracture characteristics of adhesively bonded joints. This study relates OSEE photocurrent and the classification of the bond failure modes to their PDMS surface contamination levels prior to adhesive bonding. DCB test results show that (1) the region under the traces within the load and unloading boundaries consistently correlates with the bond strength and the probability of different failure modes, and (2) bond performance at fracture depends on the surface PDMS film thickness coating prior to laser surface treatment. The decrement in bond performance in this study correlates to the OSEE readings of contaminant levels on the adherent surfaces.
机译:碳纤维增强聚合物(CFRP)在维持或改善结构性能的同时减轻航空航天和汽车应用中的重量。如果使用粘合剂代替结构组件的机械紧固件,可以用复合材料实现附加的性能增益。粘合剂的表面制备在组装过程中起着关键作用。用于监测预粘合表面条件的有效技术对于获得免于粘合降解污染物的表面至关重要,例如,如此。脱模剂,广泛用于CFRP制造。在这项工作中,在激光烧蚀之前和之后使用光学刺激的电子发射(OSEE)以测量CFRP上的沉积水平的聚二甲基硅氧烷(PDMS)(Torayca P2302-19)。 OSEE也用于模拟污染层厚度。在用改性的环氧膜粘合剂(Loctite EA 9696 Aero)粘合后,将它们进行双悬臂梁(DCB)试验以研究表面污染物种和水平影响粘合接头的断裂特性的假设。本研究涉及在粘合剂粘合之前对其PDMS表面污染水平的粘合性光电流和粘合失效模式的分类。 DCB测试结果表明,(1)负载和卸载边界内的迹线下的区域与粘合强度始终相关,不同故障模式的概率,(2)断裂处的粘合性能取决于表面PDMS膜厚度涂层之前激光表面处理。该研究中的粘合性能的减少与粘附表面上的污染物水平的OSEE读数相关。

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