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仿生物柔韧凯芙拉/水凝胶复合材料,兼具抗刺穿和应变传感性能,可用于个人防护装备。

Bioinspired Flexible Kevlar/Hydrogel Composites with Antipuncture and Strain-Sensing Properties for Personal Protective Equipment.

机构信息

School of Textile Science and Engineering, Xi'an Polytechnic University, Xi'an, Shaanxi 710048, China.

The Second Clinical Medical School, Lanzhou University, Lanzhou, Gansu 730000, China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 28;16(34):45473-45486. doi: 10.1021/acsami.4c08659. Epub 2024 Aug 16.

Abstract

Currently, multifunction has become an essential direction of personal protective equipment (PPE), but achieving the protective effect, flexibility, physiological comfort, and intelligent application of PPE simultaneously is still a challenge. Herein, inspired by the meso-structure of rhinoceros skin, a novel strategy is proposed by compounding an ammonium sulfate ((NH)SO) solution soaked gelatin hydrogel with the high weight fraction and vertically interwoven Kevlar fibers to manufacture a flexible and wearable composite with enhanced puncture resistance and strain-sensing properties. After (NH)SO solution immersion, the hydrogel's tensile strength, toughness, and fracture strain were up to 3.77 MPa, 4.26 MJ/m, and 305.19%, respectively, indicating superior mechanical properties. The Kevlar/hydrogel composites revealed excellent puncture resistance (quasi-static of 132.06 N and dynamic of 295.05 N), flexibility (138.13 mN/cm), and air and moisture permeability (17.83 mm/s and 2092.73 g m day), demonstrating a favorable balance between the protective effect and wearing comfort even after 7 days of environmental exposure. Meanwhile, salt solution immersion endowed the composite with excellent strain-sensing properties at various bending angles (30-90°) and frequencies (0.25-1 Hz) and allowed it to monitor different human motions directly in real-time. The rhinoceros-skin-inspired Kevlar/hydrogel composites provide a simple and economical solution for antipuncture materials that combine high protective effects, a comfortable wearing experience, and good strain-sensing properties, promising multifunctional PPE in the future.

摘要

目前,多功能已成为个人防护装备 (PPE) 的一个重要方向,但同时实现 PPE 的防护效果、灵活性、生理舒适性和智能应用仍然是一个挑战。在此,受犀牛皮肤的中尺度结构启发,提出了一种通过复合浸有硫酸铵((NH4)2SO4)溶液的明胶水凝胶与高重量分数且垂直交织的 Kevlar 纤维来制造具有增强的抗刺穿性和应变传感性能的柔性可穿戴复合材料的新策略。在(NH4)2SO4 溶液浸泡后,水凝胶的拉伸强度、韧性和断裂应变分别高达 3.77 MPa、4.26 MJ/m 和 305.19%,表现出优异的机械性能。Kevlar/水凝胶复合材料表现出优异的抗刺穿性(准静态 132.06 N 和动态 295.05 N)、柔韧性(138.13 mN/cm)和空气和水分透过性(17.83 mm/s 和 2092.73 g m day),即使在环境暴露 7 天后,仍能在防护效果和穿着舒适性之间取得良好的平衡。同时,盐水浸泡使复合材料在各种弯曲角度(30-90°)和频率(0.25-1 Hz)下具有优异的应变传感性能,并允许其直接实时监测不同的人体运动。受犀牛皮启发的 Kevlar/水凝胶复合材料为结合高防护效果、舒适的穿着体验和良好的应变传感性能的抗刺穿材料提供了一种简单且经济的解决方案,有望在未来实现多功能的 PPE。

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