年次大会
Online ISSN : 2424-2667
ISSN-L : 2424-2667
セッションID: J044031
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J044031 ラム波分散性の変化を利用した複合材の剥離損傷検知手法への実環境の影響
五来 雄歩岡部 洋二副島 英樹荻原 慎二
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The authors have developed a built-in ultrasonic propagation system consisting of macro fiber composite (MFC) actuators and fiber Bragg grating (FBG) sensors. This system can propagate multiple modes of broadband Lamb waves in CFRP laminates and can identify all the modes by synchronized actuation of two MFCs and measurement with two FBGs on both surfaces of the laminate. Hence, a new delamination detection method has been established on the basis of the change in the frequency dispersion caused by the mode conversions at the delamination edges. However, the frequency dispersion is also affected by the temperature change. From a practical point of view, it is important to compensate the temperature effect on this detection method. Hence, in this research, we conducted experiments for CFRP quasi-isotropic laminates with an artificial delamination at various temperatures in a thermostatic chamber, in order to evaluate the effect of environmental temperature on the frequency dispersion of anti-symmetric (A) modes. As a result, with an increase in the temperature, the time of flight (ToF) of A_0 mode increased and that of A_1 mode decreased. However, ToF of A_0 was independent of delamination ljpnth D and the dispersion slope of A_1 changed depending on the D because of the mode conversions. Hence the environmental temperature can be estimated from the ToF of A_0, and the estimated temperature can be used to compensate the temperature effect on the change in the dispersion slope of A_1. Therefore, we will be able to evaluate the delamination ljpnth in CFRP with compensation of temperature change. In addition, we found that change in mechanical properties of the CFRP by the temperature increase affected the mode dispersion from comparing the results between experiment and FEA.
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© 2012 一般社団法人 日本機械学会
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