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Volumn 54, Issue 6, 1996, Pages 749-754
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Flaw detection in d33 mode multilayer ceramic actuators using impedance-frequency scans
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Author keywords
Acoustics; Ceramic material; Destructive parts analysis; Flaw detection; High frequency impedance; Nondestructive testing; Piezoelectric resonances; Ultrasonic testing
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Indexed keywords
ACOUSTIC IMPEDANCE;
CERAMIC MATERIALS;
MECHANICAL ACTUATORS;
PIEZOELECTRIC ACTUATORS;
PIEZOELECTRICITY;
ULTRASONIC TESTING;
ACOUSTIC VARIABLES MEASUREMENT;
DEFECTS;
DELAMINATION;
ENERGY DISSIPATION;
MULTILAYERS;
NONDESTRUCTIVE EXAMINATION;
PIEZOELECTRIC DEVICES;
RESONANCE;
SENSITIVITY ANALYSIS;
ULTRASONIC APPLICATIONS;
D 33;
DESTRUCTIVE PARTS ANALYSIS;
FLAW DETECTION;
FREQUENCY SCANS;
HIGH FREQUENCY IMPEDANCE;
IMPEDANCE ANALYZER;
INDUCED VIBRATIONS;
INTERNAL FLAWS;
PIEZOELECTRIC RESONANCE;
TEST FREQUENCIES;
NONDESTRUCTIVE EXAMINATION;
ACTUATORS;
ACOUSTIC RESONANCE MEASUREMENTS;
DESTRUCTIVE PART ANALYSIS;
FLAW DETECTION;
HIGH DETECTION SENSITIVITY;
HIGH DISSIPATION FACTORS;
IMPEDANCE FREQUENCY SCAN;
KALEIDOGRAPH;
MODE MULTILAYER CERAMIC ACTUATORS;
PIEZOELECTRIC RESONANCES;
ULTRASONIC TESTING;
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EID: 0030166028
PISSN: 00255327
EISSN: None
Source Type: Trade Journal
DOI: None Document Type: Article |
Times cited : (5)
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References (8)
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