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High temperature electrostrictive ceramics for a venus ultrasonic rock sampling tool

Wesley S. Hackenberger, E.F. Alberta, Paul W. Rehrig, Shujun Zhang, Clive A. Randall, Richard E. Eitel, Thomas R. Shrout

Year
2005
Citations
5

Abstract

NASA's intended mission to Venus (the Venus In-situ Explorer) will require unprecedented advances in robotic technology suited for high temperatures and extreme environments. This paper addresses development of an ultrasonic rock drilling-coring-abrading tool to quickly sample Venus surface material for chemical analysis. The key innovation behind this device is a BiScO/sub 3/-PbTiO/sub 3/ piezoelectric ceramic that has been modified to have high resistivity up to 500/spl deg/C. This material was found to have very good piezoelectric properties to the depoling temperature of 420/spl deg/C, and at 450/spl deg/C it functioned as an electrostrictor with an induced piezoelectric coefficient of /spl sim/ 450 pC/N under a 7 kV/cm DC bias.

Keywords

ElectrostrictionVenusMaterials sciencePiezoelectricityCeramicCoringUltrasonic sensorElectrical resistivity and conductivityDrillingComposite material

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