Sliding type device for measuring oxygen exchange coefficient and oxygen diffusion coefficient

A technology of oxygen diffusion coefficient and oxygen exchange coefficient, which is applied in the direction of measuring devices, instruments, scientific instruments, etc., can solve the problems of high cost and unsatisfactory data accuracy, and achieve stable test process, low cost of test analysis, and simple test method Effect

Active Publication Date: 2015-07-22
SHANGHAI UNIV
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  • Application Information

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Problems solved by technology

[0028] The existing analytical and testing devices for measuring oxygen exchange coeffi

Method used

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  • Sliding type device for measuring oxygen exchange coefficient and oxygen diffusion coefficient
  • Sliding type device for measuring oxygen exchange coefficient and oxygen diffusion coefficient
  • Sliding type device for measuring oxygen exchange coefficient and oxygen diffusion coefficient

Examples

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Embodiment Construction

[0047] Preferred embodiments of the present invention are described in detail as follows:

[0048]In this example, see figure 2 , a sliding device for measuring oxygen exchange coefficient and oxygen diffusion coefficient, mainly including an experimental platform device, a material conductivity testing device 8, an input and output device, and a data analysis system. The test end of conductivity testing device 8 is installed on the experimental platform device, and the test end of material conductivity testing device 8 is in direct contact with the experimental material sample to be tested, and the material conductivity testing device 8 will test the conductivity of the experimental material sample to be tested. The rate signal is input to the data analysis system, and the data I / O interface of the data analysis system is connected to the input and output device. The sliding device for measuring the oxygen exchange coefficient and oxygen diffusion coefficient in this embodim...

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Abstract

The invention discloses a sliding type device for measuring the oxygen exchange coefficient and the oxygen diffusion coefficient. The sliding type device comprises an experimental platform device, a material conductivity test device, an input and output device, a data analysis system, a gas mixing device, an atmosphere pre-heating device and a gas detecting device, wherein a to-be-measured experimental material sample arranged on a sample table is switched in different experimental cavity atmospheres in the whole testing process, a gap between a sliding shaft and each shaft hole in the cavity wall is reduced through thermal expansion at the high temperature by the aid of a sealing part machined precisely, and accordingly, sealing between cavities is realized; a gas mixing device is used for providing different oxygen partial pressure test gases; an atmosphere pre-heating device is used for controlling the gas temperature; the data analysis system is used for performing signal data fitting computation to obtain the oxygen exchange coefficient and the oxygen diffusion coefficient. According to the sliding type device for measuring the oxygen exchange coefficient and the oxygen diffusion coefficient, signal data are collected by the test device, so that data of the oxygen exchange coefficient and the oxygen diffusion coefficient of the material are obtained accurately and rapidly, and the material performance data are obtained.

Description

technical field [0001] The invention relates to a material physical performance testing device, in particular to a material oxygen conductivity testing device, which is applied in the technical field of material physical performance analysis and testing. Background technique [0002] In the process of studying the oxygen conduction process of the material system, the surface oxygen exchange coefficient (k) and bulk diffusion coefficient (D) are usually used to characterize the change of oxygen flow rate to characterize the corresponding two important processes - surface adsorption and bulk diffusion. To date, two methods of measurement are generally used to obtain these two parameters. One is the isotope exchange depth curve method (IEDP), using 18 The diffusion curve of O isotope in the sample is fitted to obtain two parameters. Another method is the electrical conductivity relaxation method (ECR), which changes the oxygen partial pressure in the surrounding environment o...

Claims

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Application Information

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IPC IPC(8): G01N13/00
Inventor 甄强谭威李榕
Owner SHANGHAI UNIV
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