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Experimental investigation on static/dynamic characteristics of a fast-response pressure sensitive paint 被引量:9
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作者 Ruiyu LI Limin GAO +1 位作者 Tianlong ZHENG guanhua yang 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2018年第6期1198-1205,共8页
An optical-based technique using Pressure-Sensitive Paint(PSP) is a promising method to measure the distribution of surface pressure on an aerodynamic model. The static and dynamic characteristics of a fast-response... An optical-based technique using Pressure-Sensitive Paint(PSP) is a promising method to measure the distribution of surface pressure on an aerodynamic model. The static and dynamic characteristics of a fast-response PSP that is developed in the Chinese Academy of Sciences(CAS)are analyzed and tested to serve as the basis for experiments on unsteady surface measurement using a fast-response PSP. Two calibration systems used for this study are set up to investigate the temperature dependency, response time, and resolution. A data processing method, used for dynamic data, is analyzed and selected carefully to determine the optimum signal. Results show that the fastresponse PSP can be used normally at temperatures from 25 ℃ to 80 ℃. The effect of temperature on the accuracy of the measurement must be considered when temperatures are beyond the temperature range of 30–40 ℃. The dynamic calibration device with a solenoid valve can achieve a pressure jump within a millisecond order. The resolution is determined by the signal-to-noise ratio of the photo-multiplier tube. Results of the measurement show that the response time of the PSP decreases with a large pressure variation, and the response time is below 0.016 s when the pressure variation is under 40 kPa. 展开更多
关键词 Dynamic calibration Pressure measurement Pressure sensitive paint Signal processing Unsteady flow
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Investigation of positive bias temperature instability for monolayer polycrystalline MoS2 field-effect transistors
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作者 guanhua yang Jia Wei Wang +6 位作者 JieBin Niu XiChen Chuai CongYan Lu Di Geng NianDuan Lu Ling Li Ming Liu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第1期126-129,共4页
In recent years,molybdenum disulfide(Mo S2)has exhibited remarkable electrical,mechanical and optical properties because of its ultrathin body thickness,flexibility and direct bandgap for photo response[1].
关键词 POLYCRYSTALLINE MOLYBDENUM effect
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