首页> 外文期刊>Smart Materials & Structures >Sensor yarns for real-time in situ detection of damage behavior for the purpose of structural health monitoring of textile-reinforced thermoset composites: development of a continuous wet-chemical silvering process for high-performance filament yarn
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Sensor yarns for real-time in situ detection of damage behavior for the purpose of structural health monitoring of textile-reinforced thermoset composites: development of a continuous wet-chemical silvering process for high-performance filament yarn

机译:传感器纱线用于实时原位检测纺织加固热固性复合材料结构健康监测的损伤行为:开发高性能长丝纱的连续湿化镀银过程

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摘要

High-performance textile yarns such as glass filament (GF) yarn will be used as the base material for the development of sensor yarns because glass filament yarns offer both high tensile strengths and moduli of elasticity, as well as high melting temperatures and elongation. A new continuous wet-chemical metallization process has been developed for GF yarns on a laboratory scale to achieve special properties such as electrical conductivity. The aim of the work is to develop a continuous wet-chemical silver plating process for the GF-filament yarn in order to achieve electrical conductivity on the GF-surface. The process was carried out continuously in order to metallize the GF, which is sensitive to the shear force. A homogeneous, completely covered and adhered silver layer on the GF yarn surfaces was obtained by the application of this technology. The surface morphology was been determined by light and scanning electron microscopy to assess the silver layer properties such as structure, homogeneity, and cracking. The chemical structure of the surfaces was analyzed by means of energy dispersive x-ray spectroscopy. For structural analysis, GF yarns were investigated using a Fourier transform infrared spectrometer. The dispersive and polar component of the surface energy of the sized and silvered GF yarn was measured by using a single fiber Tensiometer K100. The silver layer thickness and the silver content were determined after the metallization. Textile physical tests of the tensile strength, elasticity modulus, elongation at break, and yarn fineness of the single GF yarns as well as GF bundle were carried out.
机译:玻璃丝(GF)纱等高性能纺织纱线将用作开发传感器纱线的基材,因为玻璃长丝纱线提供高抗拉强度和弹性的模态,以及高熔点温度和伸长率。在实验室规模上为GF纱线开发了新的连续湿化学金属化方法,以实现电导率等特殊性质。该工作的目的是为GF-长丝纱线开发连续的湿化学镀银过程,以便在GF-Surface上实现电导率。该方法是连续进行的,以便金属化GF,其对剪切力敏感。通过应用该技术,获得GF纱表面上的均匀,完全覆盖和粘附的银层。通过光和扫描电子显微镜确定表面形态,以评估银层性质,例如结构,均匀性和裂化。通过能量分散X射线光谱分析表面的化学结构。对于结构分析,使用傅里叶变换红外光谱仪研究GF纱线。通过使用单纤维张力计K100测量尺寸和镀银GF纱线的表面能的分散和极性分量。金属化后测定银层厚度和银含量。进行纺织物理测试的拉伸强度,弹性模量,断裂伸长率,以及单个GF纱线的纱线和GF束的细度。

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