首页> 外文期刊>Journal of Engineered Fibers and Fabrics >Impact of Weft Laid-in Structural Knitting Design on Fabric Tension Behavior and Interfacial PressurePerformance of Circular Knits
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Impact of Weft Laid-in Structural Knitting Design on Fabric Tension Behavior and Interfacial PressurePerformance of Circular Knits

机译:纬编结构针织设计对圆形针织物织物张力行为和界面压力性能的影响

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Inlay yarn and laid-in stitches as important technical knitting elements have been commonly applied in the structural design and pressure control of compression textiles for certain healthcare and therapeutic purposes. In this study, complex weft laid-in stitches design changed the configurations of the studied elastic hoses and exerted significant impact on tension properties and pressure performance. The elastic hoses with laid-in structure involving more tuck loops generated lower tensile energy and elastic hysteresis in stretch. The resulting interfacial pressure thus generated showed a significantly increasing trend and better linear relationship with the raising of tension ratios. The hoses with longer floated inlay yarn increased the fabric extensibility but reduced tensile recovery. The geometric and morphologic deformations in stitches structure may impact the loop densities and compressive forces, thus varying the interfacial pressure generated during stretching. Laplace’s law verified the interactive relations among pressure, tension, and curvature radius; however, its accuracy in the evaluation of pressure magnitudes of compression textiles needs to be further studied
机译:为了某些保健和治疗目的,作为重要的技术编织要素的镶嵌纱和埋线针迹通常用于压缩织物的结构设计和压力控制中。在这项研究中,复杂的纬编线圈设计改变了所研究的弹性软管的配置,并对张力性能和耐压性能产生了重大影响。带有更多褶皱环的嵌入式结构弹性软管产生较低的拉伸能和拉伸时的弹性滞后。由此产生的所产生的界面压力显示出随着张力比的增加而显着增加的趋势和更好的线性关系。带有更长的浮动镶嵌纱线的软管增加了织物的可延展性,但降低了拉伸回复率。针迹结构中的几何和形态变形可能会影响线圈密度和压缩力,从而改变拉伸过程中产生的界面压力。拉普拉斯定律验证了压力,张力和曲率半径之间的相互作用关系。但是,其在压缩纺织品压力大小评估中的准确性有待进一步研究

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