工艺参数对化学镀镍和化学电镀镍纤维镀铜工艺的影响

IF 1.5 Q2 MATERIALS SCIENCE, TEXTILES Research journal of textile and apparel Pub Date : 2023-10-30 DOI:10.1108/rjta-03-2023-0037
Aizhan Doshibekova, Indira Jurinskaya, Salikh Tashpulatov, Raushan Zhilisbayeva, Lazzat Sarttarova, Rustam Akbarov, Marzhan Kalmakhanova
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引用次数: 0

摘要

目的研究在化学镀镍和化学电镀镍的腈纶纤维上电镀镀铜,并进一步加工成纱线、织物、针织品和非织造材料的可能性。制备了含铜量不同的导电纤维,研究了电解液pH、组成、第一、第二阴极电流强度以及金属化时间对含铜纤维电物理、物理和机械性能的影响。研究表明,随着铜含量的增加,涂层的导电性、均匀性和电物理性能(对于化学电镀镍纤维)的均匀性都有所提高。在化学镀镍纤维镀铜的情况下,即使铜含量增加,电阻的变化系数也随着镀时间的增加而增加,而铜含量和电阻的变化系数减小。含铜纤维的物理和机械性能与原始(镀铜)和工业氮纤维略有不同。镀铜后,与量产的氮气纤维相比,纤维的强度几乎没有下降,伸长率有所下降。含铜纤维具有很高的物理力学性能,使其有可能成功地进一步加工成纱线、织物、针织品和非织造材料。
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Effect of technological parameters on the process of copper deposition on chemically and chemical-galvanically nickel-plated fibers
Purpose This paper aims to study the possibility of electroplating copper coatings on chemically and chemical-galvanically nickel-plated acrylic fibers, to be further processed into yarn, fabrics, knitwear and nonwoven materials. Design/methodology/approach Electrically conductive fibers with different copper contents have been obtained, and the effect of electrolyte pH, its composition, current strength at the first and second cathodes, as well as the metallization time on the electrophysical, physical and mechanical properties of copper-containing fibers, has been studied. Findings The studies have shown that with an increase in the copper content, the electrical conductivity, the uniformity of the coating and the uniformity of the electrophysical properties (for chemical-galvanically nickel-plated fiber) increase. In the case of copper plating of chemically nickel-plated fiber, the coefficient of variation in electrical resistance increases with increasing plating time, even though the copper content increases, and the coefficient of variation in copper content and electrical resistance decreases. The physical and mechanical properties of copper-containing fibers differ slightly from the original (subjected to copper plating) and industrial Nitron fibers. With copper plating, the strength of the fiber practically does not decrease, and the elongation decreases somewhat, compared with the mass-produced Nitron fiber. Originality/value The physical and mechanical properties of copper-containing fibers are quite high, which makes it possible to be successfully further processed into yarn, fabrics, knitwear and nonwoven materials.
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来源期刊
Research journal of textile and apparel
Research journal of textile and apparel MATERIALS SCIENCE, TEXTILES-
CiteScore
2.90
自引率
13.30%
发文量
46
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