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The effect of fabric structure on the compression behavior of weft-knitted spacer fabrics for cushioning applications

机译:织物结构对缓冲应用纬编间隔织物压缩行为的影响

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摘要

In this research the effect of surface layer knit pattern, and spacer yarn's inclination angle on the compression behavior of weft- knitted spacer fabrics made for cushioning applications have been investigated. The results reveal that fabric's compression resistance increases by increasing the spacer yarn's inclination angle as well as increasing the number of tuck stitches in successive courses in the surface layer. Moreover, by increasing the spacer yarn's inclination angle, the fabric's resilience, thickness change, and thickness recovery decrease, while the absorbed energy and dissipated compression energy increases. Furthermore, by increasing the number of tuck stitches in successive courses in the surface layer, the fabric's resilience as well as relative compressibility decreases, whilst the absorbed energy and dissipated compression energy increases. Eventually, spacer fabrics consist of knit stitches on their surface layers are more appropriate for cushioning applications due to higher energy absorption, and better resiliency and relative compressibility.
机译:在这项研究中,已经研究了表面层针织图案的影响,以及间隔纱的倾斜角度对用于缓冲应用的纬编间隔织物的压缩行为。结果表明,通过增加间隔纱线的倾斜角度以及增加表面层中的连续课程中的折叠针的数量来增加织物的压缩阻力。此外,通过增加间隔纱线的倾角,织物的弹性,厚度变化和厚度恢复减小,而吸收的能量和耗散的压缩能量增加。此外,通过增加表面层中的连续课程中的折叠缝线的数量,织物的弹性以及相对可压缩性降低,而吸收的能量和耗散的压缩能量增加。最终,由于较高的能量吸收,以及更好的弹性和相对可压缩性,它们的表面层上的针织织物包括针织缝合更适合缓冲应用。

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