不同编织结构的物理力学性能分析及其在医疗卫生领域的潜在应用

C. Stroe, T. Sarbu
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引用次数: 0

摘要

本研究旨在通过使用从不同纤维混纺中获得的纺织纱线,并通过改变织物的结构参数,创造出具有潜在应用于医疗保健和卫生的不同机织物。他们使用了四种不同的编织模式:warprib、2/2斜纹、2/2尖斜纹和麻袋。主要使用棉纤维,但由具有额外抗菌性能的再生纤维素(银离子)和超高韧性聚乙烯(UHMWPE)制成的纤维也以不同比例使用。这些纱线的选择和组合,以及面料的合理设计,有助于支持纺织领域的可持续性,提高人们的生活质量,特别是那些有特殊需求的人(老年人、残疾人或患有各种疾病限制其自由活动的人),并确保更长的使用时间和功能的表现。对比分析了结构参数对织物物理力学性能的影响,以及纤维类型对织物物理力学性能的影响。
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ANALYSIS OF THE PHYSICO-MECHANICAL PROPERTIES OF DIFFERENT WOVEN STRUCTURES WITH POTENTIAL APPLICATIONS IN THE HEALTHCARE AND HYGIENE SECTO
This study aimed at creating different woven textile fabrics with potential applications related to healthcare and hygiene by using textile yarns obtained from diverse fibre blends and by varying the structural parameters of the fabrics. Four different weave patterns were used to create the fabrics: warp rib, 2/2 twill, 2/2-pointed twill and hopsack. Cotton fibres were mostly used, but fibres made from regenerated cellulose with extra antibacterial properties (silver ions) and from ultra-high tenacity polyethylene (UHMWPE) were also used in different proportions. The choice and combination of these types of yarns, along with the rational design for making the fabrics contribute to supporting the sustainability of the textile field, improving the quality of life of people, especially those with special needs (the elderly, people with disabilities, or people with various diseases that limit their free movement) and also ensuring a longer usage time and manifestation of functionalities. A comparative analysis regarding the influence of structural parameters, but also the influence of fibre types on the physico-mechanical performance of the created fabrics was made.
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DEVELOPMENT OF TEXTILE-RUBBER COMPOSITE MATERIALS USING RECYCLED RUBBER AND TEXTILES WITH APPLICATIONS IN INDUSTRY ELECTROSPINNING OF ANTIBACTERIAL POLYURETHANE/ZnO NANOFIBERS GROWING MATERIALS: EXPLORING NEW DESIGN PRACTICES TOWARDS A SUSTAINABLE FASHION SECTOR SELECTIVE DEPOSITION OF NANOFIBERS NET ON TEXTILE STRUCTURES OVERVIEW OF THE KNITTED MATERIALS WITH VIBRATIONS DAMPING CAPACITY
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