Hoque Md Saiful, Hossain Md Jakir, Rahman Md Mahbubur, Rashid Md Mizanur
Department of Textile Engineering, Daffodil International University, Bangladesh.
Textile Engineering College, University of Chittagong, Chittagong, Bangladesh.
Heliyon. 2022 Jun 9;8(6):e09605. doi: 10.1016/j.heliyon.2022.e09605. eCollection 2022 Jun.
The physical properties of weft knitted fabrics can be modified according to the fabric structure and the raw material used to manufacture the final fabric. This research demonstrates the influence of fiber types and fabric structure on some specific physical properties such as bursting strength, wicking behavior, pilling effect, and abrasion resistance of weft knitted fabrics. For this purpose, in this research study, one natural fiber cotton, one regenerated fiber viscose, and one synthetic fiber polyester were used. At the same time, to avoid any conflicts of the other fabric production factors, the number of feeders, machine diameter, needle gauge, stitch length was kept constant during the production of the weft-knitted fabrics. Moreover, three different structures of single jersey fabric like plain single jersey, single lacoste, and double lacoste were used to produce nine single jerseys of weft knitted fabric, while in each knit structure, three fabrics were produced using 100% cotton, 100% viscose, and 100% polyester fiber. Statistical analysis has been performed along with factorial analysis of variance (ANOVA) followed by simple main effect and simple comparison analysis. The finding illustrates that both fiber types and fabric structure regulate the physical properties of weft knitted fabrics. The polyester fiber seems to possess excellent mechanical properties such as bursting strength, abrasion, and pilling resistance without any influence of fabric structures studied in this research. However, both the fiber types and fabric structure combinedly influence the wicking of weft knitted fabrics. Additionally, it has been assumed that the influence of fiber types and fabric structure on strength, pilling, abrasion-resistant, and wicking properties of fabrics also combined with the areal density and extensibility of weft knitted fabrics.
纬编针织物的物理性能可根据织物结构和用于制造最终织物的原材料进行调整。本研究展示了纤维类型和织物结构对纬编针织物某些特定物理性能的影响,如破裂强度、芯吸性能、起球效果和耐磨性。为此,在本研究中,使用了一种天然纤维棉、一种再生纤维粘胶和一种合成纤维聚酯。同时,为避免其他织物生产因素的干扰,在生产纬编针织物时,喂纱器数量、机器直径、针距、线圈长度保持不变。此外,使用了三种不同结构的单面针织物,如平纹单面针织物、单面双珠地针织物和双面双珠地针织物,来生产九种纬编单面针织物,而在每种针织结构中,使用100%棉、100%粘胶和100%聚酯纤维生产三种织物。进行了统计分析以及方差分析(ANOVA),随后进行简单主效应和简单比较分析。研究结果表明,纤维类型和织物结构都对纬编针织物的物理性能有调节作用。聚酯纤维似乎具有优异的机械性能,如破裂强度、耐磨性和抗起球性,不受本研究中所研究的织物结构的影响。然而,纤维类型和织物结构共同影响纬编针织物的芯吸性能。此外,据推测,纤维类型和织物结构对织物强度、起球、耐磨和芯吸性能的影响也与纬编针织物的面密度和延伸性有关。