首页> 外文会议>ICAS 2012 >WAVELET-BASED ACTIVE SENSING FOR QUANTITATIVE ASSESSMENT OF THROUGH-THICKNESS CRACK SIZE AND ANGLE IN COMPOSITE PLATES
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WAVELET-BASED ACTIVE SENSING FOR QUANTITATIVE ASSESSMENT OF THROUGH-THICKNESS CRACK SIZE AND ANGLE IN COMPOSITE PLATES

机译:基于小波的主动性感测,用于复合板中通厚裂纹尺寸和角度的定量评估

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Cost-effective and reliable damage detection is critical for utilization of composite materials. This paper utilizes PZT piezoelectric disks to excite the first symmetric Lamb wave (So mode). The interaction of Lamb wave mode with a through-thickness crack of different lengths and angles in [0/45/-45/90]_s CF/ЕР laminate plates is analyzed in terms of finite element method. This study contributes to the damage detection by developing an improved wavelet-based signal processing technique that enhances the visibility and interpretation of the Lamb wave signals related to defects. Based on the amount of energy dissipated by the damage, a damage index is defined as the function of an electric signal's attenuation for a limited time span and at the input frequency of the signal.
机译:具有成本效益可靠的损坏检测对于利用复合材料至关重要。本文利用PZT压电磁盘激发第一个对称羔羊波(所以模式)。在有限元方法方面分析了在有限元法中分析了λ与不同长度的贯穿粗裂纹和角度的厚度裂纹的相互作用。该研究通过开发改进的基于小波的信号处理技术有助于损坏检测,该信号加工技术提高了与缺陷相关的羊羔波信号的可见性和解释。基于受损坏消散的能量的量,损伤指数被定义为电信号对有限时间跨度和信号的输入频率的电信号衰减的函数。

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