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Rotating step by step piezomotor for nanopositioning and space applications

19 June 2023

Piezomotors are well known in various applications where high precision actuation is required like AFM or handling equipment for semiconductor production. Their specific low speed in direct drive and high torque characteristics combined with high holding torque in off power conditions make them very attractive for any positioning application and especially space mechanisms where low electrical consumption is always sought. A new concept of rotating stepping piezomotor has been developed in the frame of the LISA space project where the mechanism of the telescope orientation was addressed.

Rotation free linear actuator

19 June 2023

This paper presents the development of a rotation free linear actuator: The use of highly dynamic actuator in the rotating frame, such as piezo actuator, required dedicated devices to transmit the electrical power from the static frame to the rotating one. Slip rings and rotating transformers are able to provide this function. However the integration of such components required invasive operations

Scanning piezo mechanisms Rosetta Fligth model

19 June 2023

The MIDAS (Micro Imaging Dust Analysis System) instrument jointly developed by IWF Graz (AT) and the Solar Space Division of ESA/ESTEC (NL) will flow on ROSETTA and will analyse the dust of the 46P/Wirtanen cometa using an Atomic Force Microscope (AFM).

Piezo transducers for tank monitoring – TWI – Sept 2005

19 June 2023

Detecting microscopic structural vibrations for monitoring storage tanks with piezoelectric transducers.

Piezo-composite patches applied to the detection of defects using lamb wave focusing

19 June 2023

Ultrasonic-based SHM (Structural Health Monitoring) applications usually rely on the use of piezo-electric patches to emit and receive ultrasonic surface acoustic waves. The principle is to study the propagation of the waves through a structure to assess its health. Because of the elevated number of echoes and possible modes of propagation of the acoustic waves within the structure, those applications suffer from a burden of signal processing. This paper presents a composite piezo-electric patch and its electronics that were designed and successfully tested for reducing the complexity of the SHM detection schemes.

Piezo-composite transducer for mode and direction selectivity of Lamb waves

19 June 2023

Ultrasonic-based SHM (Structural Health Monitoring) applications commonly rely on the use of piezo-electric patches to emit and receive ultrasonic waves. The objective is to study the propagation of the waves through a structure to assess its structural integrity. Because of the elevated number of echoes and possible modes of propagation of the waves within the structure, those applications suffer from a burden of signal processing. This paper presents a composite piezo-electric patch that was designed and successfully tested for reducing the complexity of the SHM detection schemes by selecting the mode and direction of the Lamb waves received. The piezo-composite is composed of a row of eight independent ceramic pillars separated with polymer, so it is a 1-D matrix of independent piezo-patches. Used with adequate electronics and signal processing, it was shown that it allowed selecting the direction and the mode of the Lamb waves.