红麻
木质素
氢键
刚度
复合材料
韧皮纤维
纤维
材料科学
复合数
抗弯强度
天然纤维
捆绑
线密度
合成纤维
振膜(声学)
动态力学分析
失真(音乐)
汽车工业
扬声器
剪切(地质)
玻璃纤维
芯(光纤)
模数
复配
氢
硅酮
还原(数学)
作者
Hongfu Bi,Chunyu Wang,Yuan Wei,Yuan Wei,Yang Zhou,Yingying He,Tianning Yang,Feng Chen,Yazhen Wei,Yazhen Wei,Shimin Kang,Xiaofeng Ding,Jianming Zhou,Gang Chen
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2025-09-24
卷期号:26 (10): 6973-6983
标识
DOI:10.1021/acs.biomac.5c01296
摘要
Loudspeakers are essential in consumer electronics, medical devices, and automotive systems; however, their acoustic performance is often limited by a weak high-frequency response and excessive low-frequency distortion. In this work, kenaf bast fibers were extracted using a sodium hydroxide/anthraquinone (NaOH/AQ) solvent, which partially removed lignin while redistributing it at the micro- and nanoscales. During hot pressing, softened lignin acted as a natural adhesive, binding the fibers into a lightweight yet stiff composite diaphragm. The obtained diaphragm shows a density of 0.61 g/cm 3 and a stiffness of 3.37 GPa, enhancing the high-frequency response while reducing low-frequency distortion. It delivers a wide-frequency response spanning 20 to 20,000 Hz, high sensitivity of 83.2 dB, and low distortion below 0.5%. Theoretical calculations reveal that lignin contributes to stiffness enhancement by shortening hydrogen bond lengths. Practical integration into automotive speakers further validates performance. This sustainable approach provides a pathway for next-generation high-fidelity acoustic devices.
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