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Improving the adhesion between high-performance polyester fabric processed by cold plasma technology and silicone

机译:通过冷等离子体技术和硅胶加工高性能涤纶织物之间的粘附性

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To improve the adhesion between high-performance polyester fabric and silicone, the cold plasma technology was employed in this paper. And the process was optimized through orthogonal test. The changes in the surface morphology of high-performance polyester fabric processed by cold plasma technology were observed. And the mechanical property of the silicone layered with the fabric was also measured. The optimum process for increasing the roughness of the fiber surface but keeping its strength are 3min of treatment time, 80 W of power output and 30Pa of gas pressure. The strength and the modulus of the silicone layered with the fabric processed by cold plasma technology can be increased by 8.61% andl2.03%.
机译:为了改善高性能涤纶织物和硅氧烷之间的粘附,本文采用了冷等离子体技术。 并且通过正交试验优化该过程。 观察了冷等离子体技术加工高性能聚酯织物表面形态的变化。 还测量了用织物分层的有机硅的机械性能。 用于增加纤维表面粗糙度但保持其强度的最佳过程是3分钟的治疗时间,80 W的功率输出和30Pa的气体压力。 用冷等离子体技术加工的织物层叠的硅树脂的强度和模量可以增加8.61%和12.03%。

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