This study reports the design of materials suitable for backing in piezocomposite devices specifically operating at frequencies above 30MHz. Tungsten loaded epoxy backing samples were made with varying volume fractions with l-5 mum tungsten powder and RX771/HY1300 epoxy. Higher volume fractions were achieved with high shear milling exploiting a new material fabrication technology using PVB polymer, without the need for pressing. Acoustic measurements were carried out at 36MHz to characterise the samples for use in both single element transducers and arrays. The variation in longitudinal and shear wave velocities and acoustic impedance follow the Devaney scattering model with the acoustic impedance ranging from 3-15MRayls. The results show t...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
This study reports the design of materials suitable for backing in piezocomposite devices specifical...
High-performance broadband ultrasound transducers provide superior imaging quality in biomedical ult...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
This study reports the design of materials suitable for backing in piezocomposite devices specifical...
High-performance broadband ultrasound transducers provide superior imaging quality in biomedical ult...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
Routine high frequency piezocomposite fabrication is now becoming possible. However, specialized cha...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
High frequency ultrasound (HFUS) transducers are in demand for medical diagnoses requiring high spat...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...
Novel ultrasound backing materials based on polymer composites with improved dimensional stability a...