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Mechanical properties analysis and process optimization for tungsten-rhenium thin film thermocouples sensor., , , , , , и . IEEE SENSORS, стр. 1-3. IEEE, (2017)Development of Sapphire Optical Temperature Sensing System Used in Harsh Environment Sensing., , , , , , , , , и . IEEE Trans. Instrum. Meas., (2022)Influence of Magnetron Sputtering Parameters on Heat Volatilization Property of Tungsten-Rhenium Thin Film Thermocouples., , , , , , и . NEMS, стр. 143-146. IEEE, (2018)Temperature and pressure dual-parameter sensing based on Fiber Bragg Grating., , , , , , и . NEMS, стр. 1635-1639. IEEE, (2021)A protected tungsten-rhenium thin film thermocouples sensor., , , , , , и . NEMS, стр. 796-799. IEEE, (2017)Measurement study of residual stress on tungsten-rhenium thin film thermocouples by nanoindentation technology., , , , , , и . NEMS, стр. 800-803. IEEE, (2017)Achievement of a high-sensitive and high-overload sensor based on the bossed-diaphragm structure., , , , , и . NEMS, стр. 186-190. IEEE, (2014)PI-GNN: A Novel Perspective on Semi-Supervised Node Classification against Noisy Labels., , , , , , , и . CoRR, (2021)Modeling and Analysis of a Combined Stress-Vibration Fiber Bragg Grating Sensor., , , , , , и . Sensors, 18 (3): 743 (2018)Effect of Oxidation on Conductivity Characteristics of Tungsten-Rhenium Thin-Film Thermocouples Sensor., , , , , , и . NEMS, стр. 114-117. IEEE, (2019)