Science and Technology on Electronic Test & Measurement Laboratory, North University of China, Taiyuan 030051, China.
The 41st Research Institute of CECT, Qingdao 266000, China.
Ultrasonics. 2018 Sep;89:102-109. doi: 10.1016/j.ultras.2018.04.001. Epub 2018 Apr 3.
Iridium-rhodium is generally applied as a thermocouple material, with max operating temperature about 2150 °C. In this study, a ultrasonic temperature measurement system was designed by using Iridium-rhodium (60%Ir-40%Rh) alloy as an acoustic waveguide sensor material, and the system was preliminarily tested in a high-temperature oxidation environment. The result of ultrasonic temperature measurement shows that this system can indeed work stably in high-temperature oxidation environments. The relationship between temperature and delay time of ultrasonic thermometry up to 2200 °C was illustrated. Iridium-rhodium materials were also investigated in order to fully elucidate the proposed waveguide sensor's performance in a high-temperature oxidation environment. This system lays a foundation for further application of high-temperature measurement.
铱-铑通常被用作热电偶材料,最高工作温度约为 2150°C。在这项研究中,设计了一种超声测温系统,该系统使用铱-铑(60%Ir-40%Rh)合金作为声导波传感器材料,并在高温氧化环境中进行了初步测试。超声测温结果表明,该系统确实可以在高温氧化环境中稳定工作。说明了超声测温在 2200°C 以下的温度与延迟时间的关系。还对铱-铑材料进行了研究,以充分阐明所提出的波导传感器在高温氧化环境中的性能。该系统为进一步的高温测量应用奠定了基础。