变温测量用亥姆霍兹谐振光声电池的设计、性能和应用

P. S. Bechthold, M. Campagna, J. Chatzipetros
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引用次数: 0

摘要

亥姆霍兹谐振单元为变温光声测量提供了优势,因为它们允许保持单元的内部体积小,同时将冷却或加热的样品与麦克风和前置放大器分离,可以保持在室温下(1-3)。由于麦克风和前置放大器不能加热,亥姆霍兹谐振单元实际上是高温实验中唯一合适的设计(3,4),而在低温下也可以使用非谐振单元(5)。我们构建了两个谐振腔(2,3),它们一起可以覆盖90 K到1050 K的温度范围。两个电池都配有两个小阀门,用于气体交换和压力平衡。每个电池配有两根加热丝,使样品的温度稳定,精度优于0.03 K。温度由镍铬镍热电偶或铂电阻测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, Properties and Applications of Helmholtz Resonant Photoacoustic Cells for Measurements at Variable Temperatures
Helmholtz resonant cells offer advantages for variable temperature photoacoustic measurements, because they allow to keep the inner volume of the cells small and at the same time to separate the cooled or heated sample from the microphone and preamplifier which can be kept at room temperature(1-3). Since microphones and preamplifiers must not be heated, Helmholtz resonant cells are, in fact, the only appropriate design for high temperature experiments (3,4), while at cryogenic temperatures nonresonant cells may also be used(5). We constructed two resonant cells (2,3) which together are apt to cover the temperature range between 90 K and 1050 K. Both cells are supplied with two small valves used for gas exchange and pressure equilibration. Each cell is equipped with two heating filaments which allow the temperature of the sample to be stabilized with an accuracy better than 0.03 K. Temperatures are measured by Ni-Cr-Ni thermocouples or a platinum resistor.
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