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EXCIMER LASER TREATMENT OF NYLON FIBERS FOR IMPROVED ADHESION TO VULCANIZED NATURAL RUBBER

机译:尼龙纤维的准分子激光处理改善硫化天然橡胶的粘附性

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Cords made of steel, nylon or polyester are important reinforcement components used in tire industry. The bond strength between the cords and the rubber matrix is closely related to the surface properties of the cord fibers. Previous research revealed Ultraviolet (UV) laser-induced characteristic topography on synthetic fibers after irradiation, which is considered by us as an advantageous factor in developing bonding strength between fiber-rubber composites. We applied various UV laser treatments on the surfaces of nylon fibers in order to obtain similar topographic features Adhesion is affected by the valleys and peaks that form on the surface of the fibers by laser radiation. In this study, nylon cords were irradiated with different number of UV pulses using an excimer laser to understand the effect of the laser beam on nylon fiber-rubber adhesion. A fiber pull-out test method developed by our research group for bonding strength of nylon cord fibers to carbon black filled and vulcanized natural rubber was utilized in pull-out configuration. The results showed that the maximum pull-out load was reached at 300 laser pulses and then decreased.
机译:由钢,尼龙或聚酯制成的绳索是轮胎行业中使用的重要增强组件。帘线和橡胶基质之间的键合强度与脐带纤维的表面性质密切相关。以前的研究揭示了照射后的合成纤维上的紫外(UV)激光诱导的特性形貌,其被美国认为是在纤维 - 橡胶复合材料之间发育粘合强度的有利因素。我们在尼龙纤维的表面上应用了各种UV激光处理,以获得类似的地形特征,粘附受谷物和峰的峰值通过激光辐射形成纤维表面的峰值。在该研究中,使用准分子激光器用不同数量的UV脉冲照射尼龙帘线,了解激光束对尼龙纤维 - 橡胶粘合的影响。我们的研究组开发的纤维拉出试验方法,用于尼龙纤维与炭黑填充和硫化天然橡胶的粘合强度粘合强度。结果表明,在300激光脉冲下达到最大拉出载荷,然后降低。

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