A non-contact bearing system guides a sonotrode to minimize mechanical damping during high-frequency resonance vibration.
Sensor feedback controls injector pressure to prevent resin leakage and further damage during laminated glass repair.
Parallel connecting elements in the perforated plate carrier shield individual piezoelectric transducers from external mechanical and electrical stress.
Segmented CMUT electrodes separate DC bias from AC signals, eliminating switching delays that distort ultrasonic imaging.
A sonotrode bearing uses a U-shaped projection to enable simple radial and axial alignment.
Low-temperature wafer bonding integrates CMUTs with electronics, preserving circuits and enabling per-cell electrode connections.
Periodic mechanical excitation drives repair agent penetration and removes gas bubbles from damaged spots in laminated glass panes.
A linear vibrator exposes connection terminals through a first cover opening for direct substrate mounting.
Segmented structural plate webs reduce localized stress concentrations while enabling customizable spring rates for high-frequency operation.
A piezoelectric transducer tile uses integrated circuitry to configure operational modes by selecting subsets of elements.
Mechanical stimuli create porous pathways in pyrolyzed preforms, enabling uniform densification and extending service life in harsh gas turbine environments.
A rod-shaped sonotrode with milled cavities reduces energy consumption and improves concentricity for continuous transverse sealing.
Movable weights shift the center of gravity while vibration units enhance clarity, resolving the trade-off between immersion and device complexity.