Yu Annie, Sukigara Sachiko, Shirakihara Miwa
Faculty of Fiber Science and Engineering, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan.
Polymers (Basel). 2021 Oct 22;13(21):3645. doi: 10.3390/polym13213645.
Spacer fabrics are commonly used as cushioning materials. They can be reinforced by using a knitting method to inlay materials into the connective layer which reinforces the structure of the fabric. The compression properties of three samples that were fabricated by inlaying three different types of silicone-based elastic tubes and one sample without inlaid material have been investigated. The mechanical properties of the elastic tubes were evaluated and their relationship to the compression properties of the inlaid spacer fabrics was analysed. The compression behaviour of the spacer fabrics at an initial compressive strain of 10% is not affected by the presence of the inlaid tubes. The Young's modulus of the inlaid tubes shows a correlation with fabric compression. Amongst the inlaid fabric samples, the spacer fabric inlaid with highly elastic silicone foam tubes can absorb more compression energy, while that inlaid with silicone tubes of higher tensile strength has higher compressive stiffness.
间隔织物通常用作缓冲材料。它们可以通过针织方法进行增强,即将材料镶嵌到连接层中,从而增强织物的结构。研究了通过镶嵌三种不同类型的硅基弹性管制成的三个样品以及一个未镶嵌材料的样品的压缩性能。评估了弹性管的力学性能,并分析了它们与镶嵌间隔织物压缩性能的关系。在初始压缩应变为10%时,间隔织物的压缩行为不受镶嵌管的影响。镶嵌管的杨氏模量与织物压缩存在相关性。在镶嵌织物样品中,镶嵌高弹性硅泡沫管的间隔织物能吸收更多的压缩能量,而镶嵌较高拉伸强度硅管的间隔织物具有更高的压缩刚度。