2016 IEEE NW Russia Young Researchers in Electrical and Electronic Engineering Conference (EIConRusNW) 2016
DOI: 10.1109/eiconrusnw.2016.7448110
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An application report: Protective thin film layers for high temperature sensor technology

Abstract: many groups of engineers and researchers worldwide are involved in the application-oriented development of sensors. These efforts are often triggered by industrial applications and their extraordinary requirements in durability and reliability. Typical products are highly specialized sensors e.g. for temperature which are exposed to high physical and chemical stresses like in cutting or forming processes. One promising approach of space resolved or surface sensitive measurements is the use of thin film sensors… Show more

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Cited by 4 publications
(2 citation statements)
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“…Through special design of a wear protection layer and an insulation layer, it was possible to guarantee the functionality of the sensors even at temperatures in the range of over 500 °C and at the same time considerable surface pressures over 1.5 GPa [32]. Even strain measurements on curved metallic surfaces are possible [33].…”
Section: Strain and Temperature Measurements Using Directly Deposited...mentioning
confidence: 99%
“…Through special design of a wear protection layer and an insulation layer, it was possible to guarantee the functionality of the sensors even at temperatures in the range of over 500 °C and at the same time considerable surface pressures over 1.5 GPa [32]. Even strain measurements on curved metallic surfaces are possible [33].…”
Section: Strain and Temperature Measurements Using Directly Deposited...mentioning
confidence: 99%
“…The discussed dynamic system in the space of condition variables is nonlinear one of the piecewiselinear type. Based on the said dynamic system, it is possible to investigate frequency content and oscillations amplitude level at wide variability of the model' parameters (Dencker et al, 2016;Bulyanitsa et al, 2017).…”
Section: Discussion Of the Resultsmentioning
confidence: 99%