
Vmicro Key Crack
in this study, we propose a method to detect microcracks from the ultrasonic guided wave that is generated from a piezoelectric layer. as shown in fig. 4, the piezoelectric layer is disposed on a substrate, which is disposed on a flexible film. the ultrasonic guided wave is generated from the piezoelectric layer when a voltage is applied. the ultrasonic guided wave is propagated in the substrate and the flexible film and is received by a receiver that is disposed on the substrate, so that it is possible to detect the amplitude and the phase of the ultrasonic guided wave by the receiver. because the ultrasonic guided wave has a traveling direction, it is possible to detect the state of the microcrack in the depth direction. in addition, because the ultrasonic guided wave is a kind of time-variant guided wave, it is possible to detect the change in the amplitude of the ultrasonic guided wave at the same time point. it is also possible to evaluate the position of the microcrack by detecting the change in the phase of the ultrasonic guided wave.
1347-4065/61/se/se1009
we propose a novel method for filling a gap in originally invisible mechanical behavior in modeling, evaluation and products by using mechanoluminescent (ml) visual sensing. to demonstrate the effect of the method, mechanical information was evaluated in folding tests of flexible electronic films. as a result, the appearance of strain concentration was successfully visualized on the basis of mechanoluminescence, and complex dynamic mechanical information was instinctively understood from the time course of the ml patterns. in addition, the ml pattern clearly depends on the sticking situation of the flexible film on a folding plate with gripping tape even in the same test conditions such as the same folding radius, material and thickness which are considerable major factors in mechanical behavior at folding. moreover, microcrack generation was detected during the folding cycle as blinking of ml points, and it occurred even from a 10-cycle fatigue of the flexible film in endurance folding tests.
in this study, we propose a method to detect microcracks from the ultrasonic guided wave that is generated from a piezoelectric layer. as shown in fig. 4, the piezoelectric layer is disposed on a substrate, which is disposed on a flexible film. the ultrasonic guided wave is generated from the piezoelectric layer when a voltage is applied. the ultrasonic guided wave is propagated in the substrate and the flexible film and is received by a receiver that is disposed on the substrate, so that it is possible to detect the amplitude and the phase of the ultrasonic guided wave by the receiver. because the ultrasonic guided wave has a traveling direction, it is possible to detect the state of the microcrack in the depth direction. in addition, because the ultrasonic guided wave is a kind of time-variant guided wave, it is possible to detect the change in the amplitude of the ultrasonic guided wave at the same time point. it is also possible to evaluate the position of the microcrack by detecting the change in the phase of the ultrasonic guided wave.
1347-4065/61/se/se1009 we propose a novel method for filling a gap in originally invisible mechanical behavior in modeling, evaluation and products by using mechanoluminescent (ml) visual sensing. to demonstrate the effect of the method, mechanical information was evaluated in folding tests of flexible electronic films. as a result, the appearance of strain concentration was successfully visualized on the basis of mechanoluminescence, and complex dynamic mechanical information was instinctively understood from the time course of the ml patterns. in addition, the ml pattern clearly depends on the sticking situation of the flexible film on a folding plate with gripping tape even in the same test conditions such as the same folding radius, material and thickness which are considerable major factors in mechanical behavior at folding. moreover, microcrack generation was detected during the folding cycle as blinking of ml points, and it occurred even from a 10-cycle fatigue of the flexible film in endurance folding tests.
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