振动
消散
辅助
结构工程
固有频率
振动控制
声学
情态动词
模态分析
衰减
材料科学
正常模式
频率响应
航程(航空)
模态试验
能量(信号处理)
计算机模拟
有限元法
数值分析
材料性能
模式(计算机接口)
工程类
数值模型
机械工程
损耗系数
计算机科学
作者
Cherif Raef,Majd Abid,Mohamed Amine Ben Souf,Saidi Ahmed
出处
期刊:
日期:2025-10-22
卷期号:272 (2): 2761-2769
标识
DOI:10.3397/in_2025_1076750
摘要
Due to their distinct mechanical properties, auxetic structures exhibit substantial potential for attenuating low-frequency vibrations. This study presents a comprehensive methodology for evaluating their vibration performance, combining numerical modeling, prototype fabrication, and experimental testing. First, numerical simulations were conducted using ANSYS to analyze the dynamic behavior of various chiral configurations (trichiral, anti-trichiral, chiral, and hex achiral) across a frequency range of 0 to 3000 Hz. Modal and frequency response analyses were performed to identify natural modes and assess energy dissipation by calculating the Damping Loss Factor (DLF). Next, prototypes were created using 3D printing with PLA material and tested experimentally in a clamped-free setup. The experimental results were compared to numerical predictions to validate the model's accuracy and optimize design parameters. This study's findings highlight the effectiveness of chiral structures for vibration attenuation, paving the way for new applications in acoustics and vibration control in the transportation and building sectors.
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