汽车工业
噪声控制
桥(图论)
系统工程
风险分析(工程)
领域(数学)
建筑工程
噪音(视频)
噪声污染
计算机科学
材料选择
环境友好型
控制(管理)
制造工程
机械工程
选择(遗传算法)
生化工程
环境污染
工业化
吸收(声学)
建筑工程
管理科学
织物
工程类
工业工程
社会福利
作者
Bu‐Ke Shi,Li‐Yan Liu,Jia‐Horng Lin,Ching‐Wen Lou
标识
DOI:10.1002/adem.202502508
摘要
With the rapid development of industrialization and urbanization, noise pollution has become a global environmental problem, causing serious impacts on human health, psychology and social stability. Textile‐based sound‐absorbing and noise‐reducing materials show great potential for application in the field of noise control due to their advantages of light weight, high porosity, and excellent processability. This article provides a detailed review of the sound absorption mechanisms and performance testing methods for textile materials, systematically summarizing the characteristics and research progress of porous, resonant, and damping sound‐absorbing materials. It focuses on strategies for optimizing sound absorption performance through the design of gradient, multilayer, and composite structures, aiming to break through the performance limitations of traditional materials. More importantly, this review details performance target values and relevant industry standards for various materials across different application scenarios, including architectural acoustics, automotive and transportation, aerospace, and personal protection. These efforts bridge the gap between experimental research and practical application, providing a reference for the precise selection of sound‐absorbing materials. Finally, it outlines future development directions for textile‐based sound‐absorbing and noise‐reducing materials, providing a theoretical reference for promoting high‐performance, intelligent, and environmentally friendly sound‐absorbing and noise‐reducing materials.
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