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Surface Topography Influences on the Fatigue Behavior of Composite Joints

机译:表面形貌对复合关节疲劳行为的影响

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The surface condition of carbon fibre reinforced plastic (CFRP) substrates is decisive to obtain high bond strength and lifetime of adhesively bonded parts. Those surfaces were adjusted in terms of their microscopic topography by means of peel plies and release foils. The subsequent surface treatment via atmospheric pressure plasma jet or vacuum blasting allowed the modification of the microscopic roughness as well as the surface chemistry. Those configuration were assessed using surface analytic methods as well as quasi-static and cyclic fracture tests on single lap shear specimens. The microscopic surface roughness, if at all, only showed a small influence on the bond strength. Despite release agent residues, fracture was found within the fiber-matrix interface, which caused difficulties in evaluating the effect of surface pretreatments on the adhesion strength. Fatigue tests revealed a lifetime reduction of uneven microscopic rough surfaces, which was assigned to stress concentrations at the tip of asperities. The crack propagation was accelerated in case of release agent residues. If surfaces were free of contaminations, no differences between microscopically smooth and slightly structured surfaces were found. Overall, fatigue testing on single lap shear specimens showed an increased sensitivity with regard to the assessment of surface morphology.
机译:碳纤维增强塑料(CFRP)基材的表面状况是决定性的,以获得高粘合粘合部件的高粘合强度和寿命。通过剥离层和释放箔的微观形貌来调节这些表面。随后通过大气压等离子体射流或真空喷射的表面处理允许微观粗糙度以及表面化学改性。使用表面分析方法以及单圈剪切样品的准静态和循环断裂试验评估这些配置。微观表面粗糙度(如果有的话)仅对粘合强度表现出小的影响。尽管脱模剂残留物,在纤维 - 基质界面内发现裂缝,这导致评估表面预处理对粘合强度的影响的困难。疲劳试验揭示了不均匀的显微镜粗糙表面的寿命还原,其被分配到粗糙尖端的应力浓度。在脱模剂残留物的情况下加速裂纹繁殖。如果表面没有污染,则没有发现显微镜平滑和略微结构性表面之间的差异。总体而言,对单圈剪切标本的疲劳检测表现出对表面形态学评估的敏感性增加。

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