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首页> 外文期刊>Coloration Technology >The effect of ultraviolet-curable water-borne polyurethane acrylate binder concentration on the printing performance of synthetic leather
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The effect of ultraviolet-curable water-borne polyurethane acrylate binder concentration on the printing performance of synthetic leather

机译:紫外线固化水 - 载聚氨酯丙烯酸酯粘合剂浓度对合成皮革印刷性能的影响

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摘要

In this paper, synthetic leather samples were screen printed with pigmented pastes including two types of photoinitiators and three different concentrations of ultraviolet (UV)-curable water-borne polyurethane acrylate binder. The curing process was conducted under different combinations of lamps (gallium, mercury, gallium/mercury and gallium/gallium/mercury) at three power levels. Abrasion resistance, crock fastness, hardness and colour strength were investigated. Chemical changes in the clear and pigmented film structures because of UV curing were analysed by Fourier Transform-infrared spectroscopy measurements. In hardness measurements, the highest hardness values were obtained with clear and pigmented formulations which have the highest solid content (57%). In colour measurements, higher K/S values were obtained in samples printed with the formulation having a binder concentration of 46%. Wet crock fastness values improved as the energy level increased during curing, and the highest values were obtained with a formulation which had a binder concentration of 57%. Greater amounts of binder in the formulations and increased amounts of energy applied to the surface during curing increased the hardness value of the prints, thus better abrasion resistance was obtained. Overall results suggested that the highest hardness, crock fastness and abrasion resistance values were obtained with the formulation with a binder concentration of 57%. However, for ease of application, printing efficiency and colour strength, the formulation with a binder concentration of 46% is recommended for printing, and curing under consecutive passes with gallium and mercury lamps at 120 W/cm is proposed in terms of energy efficiency and printing performance.
机译:在本文中,合成皮革样品用着色糊状物印花,包括两种类型的光引发剂和三种不同浓度的紫外线(UV) - 耐水性的水合丙烯酸酯粘合剂。在三个功率水平下,在不同组合的灯(镓,汞柱,镓/汞/镓/镓/汞)的不同组合中进行。研究了耐磨性,螺母牢度,硬度和色彩强度。通过傅里叶变换 - 红外光谱测量分析由于UV固化的透明和着色膜结构中的化学变化。在硬度测量中,用透明和着色的制剂获得最高的硬度值,其具有最高的固体含量(57%)。在颜色测量中,在用粘合剂浓度为46%的配方印刷的样品中获得较高的K / S值。随着固化期间的能量水平增加,湿缸牢度值改善,并且用粘合剂浓度为57%的制剂获得最高值。在固化过程中,在制剂中具有更多量的粘合剂和施加到表面上的能量的量增加增加了印刷的硬度值,从而获得了更好的耐磨性。总体结果表明,用粘合剂浓度为57%的配方获得了最高硬度,缸牢度和耐磨性值。然而,为了易于应用,印刷效率和色强度,建议使用粘合剂浓度为46%的配方进行印刷,并在能量效率方面提出了在120W / cm的镓和汞灯的连续通过下固化。打印性能。

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  • 来源
    《Coloration Technology》 |2019年第2期|111-120|共10页
  • 作者单位

    Istanbul Tech Univ Fac Text Technol & Design Dept Text Engn TR-2578440 Istanbul Turkey;

    Istanbul Tech Univ Fac Text Technol & Design Dept Text Engn TR-2578440 Istanbul Turkey;

    Istanbul Tech Univ Fac Text Technol & Design Dept Text Engn TR-2578440 Istanbul Turkey;

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  • 正文语种 eng
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