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( a ) Side view schematic of MLO-FRP test coupon loaded on a three-point lo...
Published Online: June 13, 2024
Fig. 8 ( a ) Side view schematic of MLO-FRP test coupon loaded on a three-point load frame with the load applied at the center of the coupon and ( b ) MLO-FRP test coupon with a crack propagating beyond the PTFE insert observed visually More about this image found in ( a ) Side view schematic of MLO-FRP test coupon loaded on a three-point lo...
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( a ) Change in strain energy release rate with delamination propagation, (...
Published Online: June 13, 2024
Fig. 9 ( a ) Change in strain energy release rate with delamination propagation, ( b ) change in mean max voltage output with an increase in strain energy release rate, and ( c ) change in mean maximum voltage with delamination propagation More about this image found in ( a ) Change in strain energy release rate with delamination propagation, (...
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Side view of a circular piezoelectric transducer attached through an adhesi...
Published Online: June 13, 2024
Fig. 1 Side view of a circular piezoelectric transducer attached through an adhesive layer to a host structure. Shear τ r r ( r , ω ) and normal stresses τ z z ( r , ω ) under the transducer are shown by black arrows. More about this image found in Side view of a circular piezoelectric transducer attached through an adhesi...
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( a ), ( b ) Imaginary part of the admittance for bonded (black line) and u...
Published Online: June 13, 2024
Fig. 5 ( a ), ( b ) Imaginary part of the admittance for bonded (black line) and unbonded (blue line) piezoelectric transducers obtained from finite element simulations, along with their linear fit (dashed line), and ( c ), ( d ) the ratio of the effective radius to the physical radius a of the pi... More about this image found in ( a ), ( b ) Imaginary part of the admittance for bonded (black line) and u...
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Comparison of displacement signals (    U   r  r      and     U   z  z     ...
Published Online: June 13, 2024
Fig. 6 Comparison of displacement signals ( U r r and U z z ) computed from FE, PF, and HAM for C1 at 100 mm, at frequencies of 100 kHz and 200 kHz: ( a ) U r r : 100 kHz, ( b ) U z z : 100 kHz, ( c ) U r r : 200 kHz, and ( d ) U z z ... More about this image found in Comparison of displacement signals ( U r r and U z z ...
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Comparison of displacement signals (    U   r  r      and     U   z  z     ...
Published Online: June 13, 2024
Fig. 7 Comparison of displacement signals ( U r r and U z z ) computed from FE, PF, and HAM for C1 at 100 mm, at frequencies of 300 kHz and 500 kHz: ( a ) U r r : 300 kHz, ( b ) U z z : 300 kHz, ( c ) U r r : 500 kHz, and ( d ) U z z ... More about this image found in Comparison of displacement signals ( U r r and U z z ...
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Comparison of displacement signals (    U   r  r      and     U   z  z     ...
Published Online: June 13, 2024
Fig. 8 Comparison of displacement signals ( U r r and U z z ) computed from FE, PF, and HAM for C2 at 100 mm, at frequencies of 100 kHz and 200 kHz: ( a ) U r r : 100 kHz, ( b ) U z z : 100 kHz, ( c ) U r r : 200 kHz, and ( d ) U z z ... More about this image found in Comparison of displacement signals ( U r r and U z z ...