DocumentCode
3515125
Title
Modelling and prototyping the conceptual design of 3D CMM micro-probe
Author
Stoyanov, Stoyan ; Bailey, Chris ; Leach, Richard ; Hughes, Ben ; Wilson, Alan ; O´Neill, W. ; Dorey, Robert A. ; Shaw, Christopher ; Underhill, Daniel ; Almond, Heather J.
Author_Institution
Centre for Numerical Modelling & Process Anal., Univ. of Greenwich, London
fYear
2008
fDate
1-4 Sept. 2008
Firstpage
193
Lastpage
198
Abstract
This paper details the prototyping of a novel three axial micro probe based on utilisation of piezoelectric sensors and actuators for true three dimensional metrology and measurements at micro- and nanometre scale. Computational mechanics is used first to model and simulate the performance of the conceptual design of the micro-probe. Piezoelectric analysis is conducted to understand performance of three different materials - silicon, glassy carbon, and nickel - and the effect of load parameters (amplitude, frequency, phase angle) on the magnitude of vibrations. Simulations are also used to compare several design options for layout of the lead zirconium titanate (PZT) sensors and to identify the most feasible from fabrication point of view design. The material options for the realisation of the device have been also tested. Direct laser machining was selected as the primary means of production. It is found that a Yb MOPA based fiber laser was capable of providing the necessary precision on glassy carbon (GC), although machining trials on Si and Ni were less successful due to residual thermal effects.To provide the active and sensing elements on the flexures of the probe, PZT thick films are developed and deposited at low temperatures (Lt720 degC) allowing a high quality functional ceramic to be directly integrated with selected materials. Characterisation of the materials has shown that the film has a homogenous and small pore microstructure.
Keywords
coordinate measuring machines; lead compounds; microsensors; piezoelectric devices; 3D CMM micro-probe; PZT; actuators; computational mechanics; direct laser machining; glassy carbon; piezoelectric analysis; piezoelectric sensors; three axial micro probe; Computational modeling; Coordinate measuring machines; Fiber lasers; Machining; Metrology; Nickel; Organic materials; Piezoelectric actuators; Probes; Prototypes;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronics System-Integration Technology Conference, 2008. ESTC 2008. 2nd
Conference_Location
Greenwich
Print_ISBN
978-1-4244-2813-7
Electronic_ISBN
978-1-4244-2814-4
Type
conf
DOI
10.1109/ESTC.2008.4684348
Filename
4684348
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