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首页> 外文期刊>Applied Surface Science >Study on the physical-morphological and chemical properties of silk fabric surface modified with multiple ambient gas plasma for inkjet printing
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Study on the physical-morphological and chemical properties of silk fabric surface modified with multiple ambient gas plasma for inkjet printing

机译:用多个环境气体等离子体进行丝网表面的物理形态学和化学性质研究喷墨印刷

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The silk samples were treated by air, air/Ar and air/O-2 plasma at atmospheric-pressure to modify their physical-morphological and chemical properties for pigment ink-jet printing. By testing multiple ambient gas and different discharging time, it was concluded that the mixture of argon and especially oxygen made the plasma treatment more sufficient for enhancing the ink-jet printing performance. Unexpectedly, scanning electron microscope (SEM) reveals that there is no remarkable difference on surface morphology between original and modified samples. According to the result of X-ray photoelectron spectroscopy (XPS), the oxygen-containing radicals formed in plasma were introduced into the polymer chains of silk. Contact angle measurement indicates modified silk substrates are more hydrophilic than unmodified one. The bleeding resistance, color strength, shade and chroma of samples were investigated with the aim of evaluating the direct print properties of fabric. The anti-bleeding property of silk could be directly observed by the video zoom microscope. The color strength study proves that the modified sample has deeper color, darker shade and larger saturation. The recession experiments prove that the decline of the oxygen-containing groups started since the silk sample has been exposed to air. Nevertheless, the surface hydrophilicity of modified silk may reduce but not as completely ineffective as untreated sample.
机译:在大气压下通过空气,空气/ Ar和空气/ O-2等离子体处理丝样品以改变它们的物质形态和化学性质,用于颜料喷墨印刷。通过测试多个环境气体和不同的放电时间,得出结论是氩气和尤其是氧的混合物使等离子体处理更充分用于增强喷墨印刷性能。出乎意料地,扫描电子显微镜(SEM)揭示了原始和修饰样品之间的表面形态没有显着差异。根据X射线光电子能谱(XPS)的结果,将在血浆中形成的含氧自由基引入丝绸的聚合物链中。接触角测量表明改性丝底物比未修饰的丝底物更亲水。研究了对样品的出血性,色调,阴影和色度,目的是评估织物的直接印刷性能。通过视频变焦显微镜可以直接观察丝的抗出血性能。色彩强度研究证明,改性样品具有更深的颜色,较深的阴影和较大的饱和度。衰退实验证明,由于丝绸样品暴露于空气以来开始的含氧基团的下降。然而,改性丝的表面亲水性可以减少但不如未处理的样品完全无效。

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