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Characterisation of Electrical and Stiffness Properties of Conductive Textile Coatings with Metal Flake-Shaped Fillers

机译:金属鳞片状填料对导电纺织涂层的电学和刚度特性的表征

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摘要

Two conductive formulations containing different types of micron-sized metal flakes (silver-coated copper (Cu) and pure silver (Ag)) were characterised and used to form highly electrically conductive coatings (conductors) on plain and base-coated woven fabrics, the latter in an encapsulated construction. With e-textiles as the intended application, the fabric stiffness, in terms of flexural stiffness and sheet resistance (R ), after durability testing (laundering and abrasion) was investigated and related to user friendliness and long-term performance. Bare and encapsulated conductors with increasing amounts of deposited solids were fabricated by adjusting the knife coating parameters, such as the coating gap height (5, 20, 50, and 200 μm), which reduced the R , as determined by four-point probe (4PP) measurements; however, this improvement was at the expense of increased flexural stiffness of the coated fabrics. The addition of a melamine derivative (MF) as a cross-linker to the Cu formulation and the encapsulation of both conductor types gave the best trade-off between durability and R , as confirmed by 4PP measurements. However, the infrared camera images revealed the formation of hotspots within the bare conductor matrix, although low resistances (determined by 4PP) and no microstructural defects (determined by SEM) were detected. These results stress the importance of thorough investigation to assure the design of reliable conductors applied on textiles requiring this type of maintenance.
机译:对两种包含不同类型的微米级金属薄片(镀银的铜(Cu)和纯银(Ag))的导电配方进行了表征,并用于在平纹和底涂机织织物上形成高导电涂层(导体)。后者采用封装结构。以电子纺织品为预期应用,研究了经耐久性测试(洗涤和磨蚀)后的织物刚度,包括挠曲刚度和薄层抵抗力(R),并与用户友好性和长期性能相关。通过调整刀的涂层参数(例如,涂层间隙高度(5、20、50和200μm),降低了R),可以通过调整四点探针( 4PP)测量;然而,这种改进是以增加涂层织物的挠曲刚度为代价的。如4PP测量所证实的,将三聚氰胺衍生物(MF)作为交联剂添加到Cu配方中,并且两种导体类型的封装均可在耐久性和R之间实现最佳平衡。然而,尽管检测到低电阻(由4PP确定)且未检测到微结构缺陷(由SEM确定),但红外热像仪图像显示了在裸导体基体内形成了热点。这些结果强调了进行彻底调查以确保应用于需要此类维护的纺织品上可靠导体设计的重要性。

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