Efficient Poisson’s Ratio Evaluation of Weft-Knitted Auxetic Metamaterials

Kun Luan, Zoe Newman, Andre West, Kuan-Lin Lee, Srujan K. Rokkam
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Abstract

Auxetic metamaterials expand transversely when stretched longitudinally or contract transversely when compressed, resulting in a negative Poisson’s ratio (NPR). Auxetic fabrics are 3D textile metamaterials possessing a unique geometry that can generate an auxetic response with respect to tension. In weft-knitted auxetic fabrics, the NPR property is achieved due to the inherent curling effect of the face and back stitches of the knit loops; they contract in an organized knitting pattern. The traditional method used to evaluate NPR is to measure the lateral fabric deformation during axial tensile testing on a mechanical testing machine, which is time-consuming and inaccurate in measuring uneven deformations. In this study, an efficient method was developed to evaluate the NPR of weft-knitted fabric that can also estimate deformation directionality. The elasticity and extension properties of the weft-knitted fabric can be analyzed immediately following removal from the knitting bed. Five fabrics, all with the same stitch densities (including four auxetic patterns and one single jersey pattern), were designed and produced to validate the proposed method. The use of our estimation method to evaluate the Poisson’s ratio of such fabrics showed higher values compared with the traditional method. In conclusion, the deformation directionality, elasticity, and extensionality were examined. It is anticipated that the proposed method could assist in the innovative development and deployment of auxetic knitted metamaterials.
纬编增塑型超材料的有效泊松比评价
补缺超材料在纵向拉伸时横向膨胀,在压缩时横向收缩,导致负泊松比(NPR)。增强型织物是一种三维纺织超材料,具有独特的几何形状,可以对张力产生增强型反应。在纬编助剂织物中,由于编织环的正面和背面线的固有卷曲效应,实现了NPR性能;它们以有组织的编织方式收缩。评估非均匀性的传统方法是在机械试验机上测量轴向拉伸试验时织物的侧向变形,这种方法测量不均匀变形费时且不准确。在本研究中,提出了一种有效的方法来评估纬编织物的NPR,同时可以估计变形方向。从针织床上取下后,可立即分析纬编织物的弹性和拉伸性能。设计并生产了五种具有相同针脚密度的织物(包括四种辅助图案和一种单一的针织图案),以验证所提出的方法。用我们的估计方法来评价这类织物的泊松比,与传统方法相比,显示出更高的值。最后,测试了变形方向性、弹性和延伸性。预计所提出的方法将有助于创新性地开发和部署增塑型针织超材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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