Feng Yangyang, Zong Dingding, Hou Yijie, Yin Xia, Zhang Shichao, Duan Lunyong, Si Yang, Jia Yongtang, Ding Bin
The Engineering Technology Research Center for Functional Textiles in Higher Education of Guangdong Province, College of Textile Materials and Engineering, Wuyi University, Jiangmen 529020, China.
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.
J Colloid Interface Sci. 2021 Jul;593:59-66. doi: 10.1016/j.jcis.2021.03.013. Epub 2021 Mar 9.
Ultrafine fibrous porous materials obtained by electrospinning technology have broad application prospects in the field of noise reduction. However, the two-dimensional fibrous membranes faced low thickness and dense structure, resulting in a single internal structure and narrow sound absorption band. Here, we report a simple and robust strategy to prepare gradient structured fiber sponges with superelasticity and stretchability by combining humidity-assisted multi-step electrospinning and a unique physical/chemical dual cross-linking method. The prepared gradient structured fibrous sponge has a maximum tensile strength of 169 kPa and can lift a weight 10,000 times its weight without breaking. Besides, the material can still maintain a stable structure after 500 compression cycles at 60% strain. Meantime, the material has lightweight properties (density of 13.8 mg cm) and hydrophobicity (water contact angle of 152°). More importantly, the gradient change of porosity and pore diameter in the Z direction endowed the fibrous sponge material with high-efficiency absorption of broadband sound waves (with a noise reduction coefficient up to 0.53). The design of this gradient structured fiber sponge opens a new way for the development of ideal sound-absorbing materials.
通过静电纺丝技术制备的超细纤维多孔材料在降噪领域具有广阔的应用前景。然而,二维纤维膜存在厚度低和结构致密的问题,导致内部结构单一且吸声带宽窄。在此,我们报道了一种简单且可靠的策略,通过结合湿度辅助多步静电纺丝和独特的物理/化学双重交联方法,制备具有超弹性和拉伸性的梯度结构纤维海绵。所制备的梯度结构纤维海绵的最大拉伸强度为169 kPa,能够承受其重量10000倍的重物而不破裂。此外,该材料在60%应变下经过500次压缩循环后仍能保持稳定结构。同时,该材料具有轻质特性(密度为13.8 mg/cm)和疏水性(水接触角为152°)。更重要的是,孔隙率和孔径在Z方向上的梯度变化赋予了纤维海绵材料对宽带声波的高效吸收能力(降噪系数高达0.53)。这种梯度结构纤维海绵的设计为开发理想的吸声材料开辟了一条新途径。