Study on lamb wave propagation characteristics along the grain of thin wood sheet

IF 0.9 4区 农林科学 Q3 MATERIALS SCIENCE, PAPER & WOOD
Wang Minghua, Li Ming, Tingting Deng, Saiyin Fang, Liao Xiaosong, L. Fei
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引用次数: 2

Abstract

Through the time-frequency analysis of the propagation waveform of the acoustic emission (AE) signal propagating in the thin sheet of Pinus sylvestris var. mongolica, the propagation characteristics of the stress wave when propagating as a lamb wave was studied. An AE source was generated on the surface of the specimen, the discrete wavelet transform method was used to achieve AE signal de-noising and reconstruct the waveform of the AE signal. On this basis, the time difference positioning method was used to calculate the propagation velocity of lamb waves, and compared with the propagation characteristics of lamb waves in the metal specimen. The results show that the high-frequency mode of lamb waves attenuated sharply as they propagate in the thin wood sheet, indicating that the microstructure of wood has a significant low-pass characteristic for lamb waves. The average attenuation rates of lamb waves in metal and thin wood sheet were 87.1% and 75.7%, and the velocity was 4447.0 m.s-1 and 1186.3 m.s-1, respectively. This shows that AE signals can travel longer distances in the thin wood sheet, but the propagation velocity is significantly reduced.
兰姆波沿薄木板纹理传播特性的研究
通过对声发射信号在樟子松薄片中传播的传播波形进行时频分析,研究了应力波作为兰姆波传播时的传播特性。在试件表面生成声发射源,采用离散小波变换方法实现声发射信号的去噪,重构声发射信号波形。在此基础上,采用时差定位法计算兰姆波的传播速度,并与兰姆波在金属试件中的传播特性进行了比较。结果表明,兰姆波在薄木板中传播时,其高频模式急剧衰减,表明木材微观结构对兰姆波具有显著的低通特性。兰姆波在金属和薄木板中的平均衰减率分别为87.1%和75.7%,速度分别为4447.0 m.s-1和1186.3 m.s-1。这表明声发射信号可以在薄木板中传播更长的距离,但传播速度显著降低。
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来源期刊
Wood Research
Wood Research 工程技术-材料科学:纸与木材
CiteScore
2.40
自引率
15.40%
发文量
81
审稿时长
5.4 months
期刊介绍: Wood Research publishes original papers aimed at recent advances in all branches of wood science (biology, chemistry, wood physics and mechanics, mechanical and chemical processing etc.). Submission of the manuscript implies that it has not been published before and it is not under consideration for publication elsewhere.
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