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SISTEM ZA ČASOVNO MERITEV SILE PREBODA OBJEKTA
ID PRIJATELJ, DEJAN (Author), ID Možek, Matej (Mentor) More about this mentor... This link opens in a new window

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PID: 20.500.12556/rul/24738823-365d-43cc-9641-902a3f36a9ec

Abstract
V diplomski nalogi je predstavljen razvoj sistema za spremljanje časovnega poteka sile preboda z nadzorom pomika. Sistem uporabniku omogoča kontroliran pomik merilne glave sistema po korakih 5 μm s sočasno meritvijo sile na merilno glavo. Predstavljeni sistem lahko uporabljamo za različne aplikacije, kot npr. za določanje sile prebadanja rastlin z iglo v biologiji ali za prebadanje vrhnje plasti kože z injekcijo pri mikrodozirnih sistemih za inzulin. Cilj naloge je bil majhen, prenosljiv, samozadosten sistem sestavljen iz krmilne elektronike s pripadajočim ohišjem, motorjem, LCD prikazovalnikom, piezorezistivnim senzorjem in ogrodja. V diplomskem delu so predstavljeni sestavni deli sistema, s poudarkom na načrtovanju in izdelavi elektronskega krmilnega sistema. Na koncu so podani trije primeri meritve sile preboda.

Language:Slovenian
Keywords:Sila preboda, piezorezistivni senzor, koračni motor, STM32VLDISCOVERY, inzulin, agarozni gel
Work type:Undergraduate thesis
Organization:FE - Faculty of Electrical Engineering
Year:2015
PID:20.500.12556/RUL-73382 This link opens in a new window
Publication date in RUL:06.11.2015
Views:1484
Downloads:366
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Secondary language

Language:English
Abstract:
This diploma thesis presents development of a penetration force measurement system with movement control. The system enables the user to perform controlled movements of the measurement head in 5 μm increments with simultaneous measurement of exerted force on an object. Presented system can be implemented in various fields of application, such as plant penetration force detection in biology as well as in insulin micro dosing systems. The aim of this work is to present a small, portable and autonomous system, comprised of control electronics with housing, a stepper motor, LCD display, piezoelectric sensor and mechanical framework. This thesis presents the development of system components, with emphasis on design and implementation of control electronics with piezoresistive force sensor. Finally, the performed test results of penetration force are described.

Keywords:Penetration force, piezoresistive sensor, stepper motor, STM32VLDISCOVERY, insulin, agarous gel.

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