Suppr超能文献

主动双负和剪切纺织品的机理与性能的实验研究

EXPERIMENTAL INVESTIGATION OF THE MECHANISMS AND PERFORMANCE OF ACTIVE AUXETIC AND SHEARING TEXTILES.

作者信息

Granberry Rachael, Holschuh Brad, Abel Julianna

机构信息

Department of Design, Housing, and Apparel, University of Minnesota, Saint Paul, MN.

Department of Mechanical Engineering, University of Minnesota, Minneapolis, MN.

出版信息

Proc ASME Conf Smart Mater Adapt Struct Intell Syst. 2019 Sep 9;2019. doi: 10.1115/smasis2019-5661.

Abstract

Anisotropic textiles are commonly used in wearable applications to achieve varied bi-axial stress-strain behavior around the body. Auxetic textiles, specifically those that exhibit a negative Poisson's ratio (v), likewise exhibit intriguing behavior such as volume increase in response to impact or variable air permeability. Active textiles are traditional textile structures that integrate smart materials, such as shape memory alloys, shape memory polymers, or carbon nanotubes, to enable spatial actuation behavior, such as contraction for on-body compression or corrugation for haptic feedback. This research is a first experimental investigation into active auxetic and shearing textile structures. These textile structures leverage the bending- and torsional-deformations of the fibers/filaments within traditional textile structures as well as the shape memory effect of shape memory alloys to achieve novel, spatial performance. Five textile structures were fabricated from shape memory alloy wire deformed into needle lace and weft knit textile structures. All active structures exhibited anisotropic behavior and four of the five structures exhibited auxetic behavior upon free recovery, contracting in both x- and y-axes upon actuation (v = -0.3 to -1.5). One structure exhibited novel shearing behavior, with a mean free angle recovery of 7°. Temperature-controlled biaxial tensile testing was conducted to experimentally investigate actuation behavior and anisotropy of the designed structures. The presented design and performance of these active auxetic, anisotropic, and shearing textiles inspire new capabilities for applications, such as smart wearables, soft robotics, reconfigurable aerospace structures, and medical devices.

摘要

各向异性纺织品通常用于可穿戴应用中,以在身体周围实现不同的双轴应力应变行为。负泊松比纺织品,特别是那些表现出负泊松比(v)的纺织品,同样表现出有趣的行为,例如对冲击的体积增加或可变的透气率。活性纺织品是传统的纺织结构,集成了智能材料,如形状记忆合金、形状记忆聚合物或碳纳米管,以实现空间驱动行为,如用于身体压缩的收缩或用于触觉反馈的波纹。本研究是对活性负泊松比和剪切纺织结构的首次实验研究。这些纺织结构利用传统纺织结构中纤维/长丝的弯曲和扭转变形以及形状记忆合金的形状记忆效应来实现新颖的空间性能。用形状记忆合金丝制成针织物和纬编织物结构,制作了五种纺织结构。所有活性结构均表现出各向异性行为,五个结构中的四个在自由恢复时表现出负泊松比行为,在驱动时在x轴和y轴上均收缩(v = -0.3至-1.5)。一种结构表现出新颖的剪切行为,平均自由角恢复为7°。进行了温度控制的双轴拉伸试验,以实验研究设计结构的驱动行为和各向异性。这些活性负泊松比、各向异性和剪切纺织品的设计和性能为智能可穿戴设备、软机器人、可重构航空航天结构和医疗设备等应用带来了新的功能。

相似文献

2
Auxetic textiles.拉胀织物
Acta Chim Slov. 2013;60(4):715-23.
9
3D Printing of Auxetic Metamaterials with Digitally Reprogrammable Shape.具有数字可重新编程形状的负泊松比超材料的3D打印。
ACS Appl Mater Interfaces. 2019 Jun 26;11(25):22768-22776. doi: 10.1021/acsami.9b06081. Epub 2019 Jun 12.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验