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Razvoj in umerjanje preizkuševališča za določanje vzmetne konstante tlačnih vijačnih vzmeti
ID Nemanič, Aljaž (Author), ID Kutin, Jože (Mentor) More about this mentor... This link opens in a new window

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PID: 20.500.12556/rul/eafb9648-69f1-4f73-b0df-2ca6bd4fb33e

Abstract
V nalogi obravnavamo zasnovo, izdelavo, umerjanje in test preizkuševališča za določanje vzmetne konstante tlačnih vijačnih vzmeti specifične geometrije. Na podlagi pregleda literature smo skonstruirali horizontalno preizkuševališče s pnevmatskim valjem kot aktuatorjem za obremenjevanje vzmeti. V preizkuševališče smo vgradili merilno celico z uporovnimi lističi za merjenje sile in potenciometrično zaznavalo pomika za merjenje skrčka vzmeti. Merilna zaznavala smo pred vgradnjo umerili in določili merilno negotovost merjenja pomika ter sile; preko slednjih parametrov smo na podlagi izmerkov računali vzmetno konstanto različnih (ne)linearnih tlačnih vijačnih vzmeti. Ugotovili smo, da preizkuševališče omogoča dobro ponovljivost meritev, katerih merilna negotovost je primerljiva z meritvami na industrijskih preizkuševališčih. Preko meritev na šesti vzmeteh smo potrdili obstoj histereze pri obremenjevanju oz. razbremenjevanju in ugotovili, da za popis karakteristike vzmeti zadostuje polinom tretje stopnje, katerega prvi odvod predstavlja koeficient vzmeti kot funkcijo.

Language:Slovenian
Keywords:koeficient vzmeti vijačna vzmet umerjanje merjenje sile merjenje pomika Hookov zakon
Work type:Bachelor thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2017
PID:20.500.12556/RUL-95504 This link opens in a new window
Publication date in RUL:20.09.2017
Views:1561
Downloads:334
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Secondary language

Language:English
Title:Development and calibration of a test bench for determination of spring constant of compression helical springs
Abstract:
In this work, we deal with the design, manufacture, calibration and testing of a test bench, design for determination of spring constant of helical compression springs with a specific geometry. Based on literature review, we designed a horizontal test bench, which utilizes a pneumatic cylinder as the actuator for spring compression. On the test bench, we installed a load cell for force measurement and a potentiometric linear displacement sensor for distance measurement. Sensors were calibrated prior to the installation and the measurement uncertainty of force and displacement measurements was calculated based on calibration results. Both of these parameters were used to calculate the spring constant of (non-)linear helical compression springs. We determined that our test bench provides good repeatability of measurements with the measurement uncertainty comparable to that of industrial test benches. Based on the measurements performed on six springs we confirmed the existence of a loading and unloading hysteresis and found that the characteristic curve of a spring can be approximated using a third-degree polynomial with the first derivative of the latter representing the spring coefficient as a function.

Keywords:spring constant helical spring calibration force measurement linear displacement measurement Hooke's law

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