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Dimensional, Physical and Thermal Comfort Properties of Plain Knitted Fabrics Made from Modal Viscose Yarns Having Microfibers and Conventional Fibers

机译:由具有超细纤维和常规纤维的莫代尔粘胶纱线制成的平纹针织物的尺寸,物理和热舒适性

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The dimensional, some physical and thermal comfort properties of the plain knitted fabrics having modal viscose microfibers in three different stitch lengths are investigated in comparison with the similar fabrics having conventional modal viscose fibers. The fabrics made from microfibers and conventional fibers exhibit different dimensional properties. The stitch density results and the dimensional constants calculated at the fully relaxed state reveal that the fabrics with microfibers tend to have lower shrinkage tendency than those with conventional fibers. The statistical results show that the fiber type (or fiber fineness) and the stitch length affect the some physical properties and all of the thermal comfort properties of the fabrics significantly. The bursting strength values of the fabrics with microfibers are observed to be slightly higher than those of the fabrics with conventional fibers. However, the difference between the bursting strength values of these fabrics is found to be statistically unimportant. The fabrics with microfibers reveal lower thickness and air permeability and, higher pilling tendency than those with conventional fibers. It is also observed from the thermal comfort results that the fabrics made from microfibers have higher thermal conductivity, thermal absorptivity and maximum heat flux values and, lower thermal resistance and thermal diffusivity values. Because of the higher thermal absorptivity and maximum heat flux values, the fabrics from microfibers provide cooler feeling when compared with those from conventional fibers.
机译:与具有传统的莫代尔粘胶纤维的类似织物相比,研究了具有三种不同针迹长度的莫代尔粘胶微纤维的平纹针织物的尺寸,一些物理和热舒适性。由微纤维和常规纤维制成的织物表现出不同的尺寸特性。针脚密度结果和在完全松弛状态下计算出的尺寸常数表明,具有微纤维的织物比具有常规纤维的织物倾向于具有较低的收缩趋势。统计结果表明,纤维类型(或纤维细度)和线迹长度会显着影响织物的某些物理性质和所有热舒适性。观察到具有微纤维的织物的破裂强度值略高于具有常规纤维的织物的破裂强度值。然而,发现这些织物的破裂强度值之间的差异在统计上不重要。与具有传统纤维的织物相比,具有微纤维的织物显示出较低的厚度和透气性,以及更高的起绒趋势。从热舒适性结果还观察到,由微纤维制成的织物具有更高的导热率,热吸收率和最大热通量值,以及更低的热阻和热扩散率值。由于较高的热吸收率和最大的热通量值,与常规纤维相比,由微纤维制成的织物具有凉爽的感觉。

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