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Adhesion and friction behavior between fluorinated carbon fibers and poly (vinylidene fluoride)

机译:氟化碳纤维与聚偏二氟乙烯之间的粘合和摩擦行为

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摘要

The potential use of fluorinated, polyacrylonirtile-based, high strength carbon fibers as reinforcement for a fluorocarbon polymer, namely poly ( vinylidene fluoride) ( PVDF), was investigated by means of the single fiber pull-out test. The apparent interfacial shear strength as a measure of practical adhesion was determined and the fracture and friction behavior of the model composites characterized. It was shown that the fracture behavior of the model composites is predominately brittle in nearly all cases. Fluorination of carbon fibers has a positive impact on the adhesive strength to PVDF. The apparent interfacial shear strength increases with increasing degree of fiber surface fluorination and becomes maximal at a degree of fiber fluorination (F/C-ratio) of around 0.8, determined by ESCA, which is close to that of PVDF. This result points to the fact that the increased "practical" adhesion is due to a physical compatibilization between the fluorinated fibers and the surrounding PVDF matrix. It was found that, even though the interfacial shear strength increases with increasing degree of fiber surface fluorination, the friction between fluorinated carbon fibers and the surrounding PVDF decreases. (C) 2003 Kluwer Academic Publishers. [References: 48]
机译:通过单纤维拉出试验研究了氟化的聚丙烯腈基高强度碳纤维作为氟碳聚合物(聚偏二氟乙烯)(PVDF)的增强材料的潜在用途。确定了表观界面剪切强度,作为实际粘合的量度,并表征了模型复合材料的断裂和摩擦行为。结果表明,在几乎所有情况下,模型复合材料的断裂行为都是脆性的。碳纤维的氟化对PVDF的粘合强度有积极影响。表观界面剪切强度随纤维表面氟化程度的增加而增加,并且在纤维氟化程度(F / C比)约为0.8时达到最大值,该程度由ESCA确定,与PVDF接近。该结果表明以下事实:增加的“实用”粘合力是由于氟化纤维与周围的PVDF基质之间的物理相容性。已经发现,即使界面剪切强度随着纤维表面氟化程度的增加而增加,氟化碳纤维与周围的PVDF之间的摩擦也会减小。 (C)2003 Kluwer学术出版社。 [参考:48]

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