Dubrovski Polona Dobnik, Novak Nejc, Borovinšek Matej, Vesenjak Matej, Ren Zoran
Mechanical Engineering Research Institute, Faculty of Mechanical Engineering, University of Maribor, 2000 Maribor, Slovenia.
Polymers (Basel). 2022 Jan 31;14(3):571. doi: 10.3390/polym14030571.
A conventional compound fabric was used to develop a modern, multifunctional material with an auxetic behaviour and a tailored open area for particle filtration. Such material was produced using traditional textile technology and laser cutting, to induce a rotating squares unit geometry. The behaviour was investigated of three different rotating unit cell sizes. The laser slit thickness and the length of the hinges were equal for all three-unit cells. The tensile properties, Poisson's ratio and auxetic behaviour of the tested samples were investigated, especially the influence of longitudinal displacement on the fabric's open area and the filtered particle sizes (average and maximum). Results show that the developed compound fabric possesses an average negative Poisson's ratio of up to -1, depending on the applied auxetic geometry. The larger rotating cell size samples offer a higher average negative Poisson's ratio and a higher breaking strength due to the induced slits. The findings highlight the usefulness of patterned cuts in conventional textile materials to develop advanced auxetic textile materials with tailored geometrical and mechanical properties.
一种传统复合织物被用于开发一种具有负泊松比行为和用于颗粒过滤的定制开孔面积的现代多功能材料。这种材料采用传统纺织技术和激光切割制成,以形成旋转方形单元几何形状。研究了三种不同旋转单元尺寸的行为。对于所有三个单元,激光狭缝厚度和铰链长度均相等。研究了测试样品的拉伸性能、泊松比和负泊松比行为,特别是纵向位移对织物开孔面积和过滤颗粒尺寸(平均和最大)的影响。结果表明,根据所应用的负泊松比几何形状,所开发的复合织物平均负泊松比高达-1。由于诱导狭缝,较大旋转单元尺寸的样品具有更高的平均负泊松比和更高的断裂强度。这些发现突出了在传统纺织材料中进行图案切割以开发具有定制几何和机械性能的先进负泊松比纺织材料的实用性。