TY - JOUR
T1 - Aging condition identification of viscoelastic sandwich structure based on empirical wavelet transform and Hilbert envelope demodulation
AU - Si, Yue
AU - Zhang, Zhousuo
AU - Kong, Lingfei
AU - Li, Shujuan
AU - Wang, Quandai
AU - Kong, Chuiqing
AU - Li, Yan
N1 - Publisher Copyright:
© 2019 Elsevier Ltd
PY - 2019/5/1
Y1 - 2019/5/1
N2 - Viscoelastic sandwich structures (VSSs) have been widely used in mechanical equipment. The aging condition monitoring of VSSs is essential for fault prevention of mechanical equipment. However, the ageing condition identification of VSS is still a challenging task since the change of structural response caused by the ageing of viscoelastic sandwich structure (VSS) is very puny. Therefore, a novel identification method based on empirical wavelet transform (EWT) and Hilbert envelope demodulation is proposed for the ageing condition identification of VSS. First, EWT is constructed to decompose the vibration response signals of VSS into a set of sub-band signals, so that the aging condition feature components are allocated in a certain frequency band. Second, the sub-band signals that contain rich aging condition information are selected and used to reconstruct a new signal. Thirdly, the reconstructed signal is analyzed with Hilbert envelope demodulation to obtain an envelope spectrum. Finally, the low band energy of envelope spectrum is calculated as detection index to identify the aging condition of VSS. The proposed method is verified with a well-designed VSS in which the viscoelastic core subjected to accelerated ageing in a thermal-oxygen ambient. The results show the outstanding performance of the proposed method.
AB - Viscoelastic sandwich structures (VSSs) have been widely used in mechanical equipment. The aging condition monitoring of VSSs is essential for fault prevention of mechanical equipment. However, the ageing condition identification of VSS is still a challenging task since the change of structural response caused by the ageing of viscoelastic sandwich structure (VSS) is very puny. Therefore, a novel identification method based on empirical wavelet transform (EWT) and Hilbert envelope demodulation is proposed for the ageing condition identification of VSS. First, EWT is constructed to decompose the vibration response signals of VSS into a set of sub-band signals, so that the aging condition feature components are allocated in a certain frequency band. Second, the sub-band signals that contain rich aging condition information are selected and used to reconstruct a new signal. Thirdly, the reconstructed signal is analyzed with Hilbert envelope demodulation to obtain an envelope spectrum. Finally, the low band energy of envelope spectrum is calculated as detection index to identify the aging condition of VSS. The proposed method is verified with a well-designed VSS in which the viscoelastic core subjected to accelerated ageing in a thermal-oxygen ambient. The results show the outstanding performance of the proposed method.
KW - Aging condition identification
KW - Empirical wavelet transform
KW - Hilbert envelope demodulation
KW - Viscoelastic sandwich structure
UR - https://www.scopus.com/pages/publications/85061547995
U2 - 10.1016/j.compstruct.2019.02.039
DO - 10.1016/j.compstruct.2019.02.039
M3 - 文章
AN - SCOPUS:85061547995
SN - 0263-8223
VL - 215
SP - 13
EP - 22
JO - Composite Structures
JF - Composite Structures
ER -