Temperature sensor preparation method based on carbon nano tube three-dimensional network film
A technology of temperature sensors and carbon nanotubes, applied in thermometers, thermometers and instruments with direct heat-sensitive electric/magnetic elements, etc., can solve the problem of increased viscosity of polymer matrix, increased cost, and influence on the overall mechanical properties of composite materials and other problems, to achieve the effect of improving the interface bonding strength, good interface bonding performance, excellent temperature sensing accuracy and linear repeatability
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Embodiment 1
[0021] refer to figure 1 , figure 2 , a method for preparing a temperature sensor based on a carbon nanotube three-dimensional network film, is achieved through the following steps:
[0022] a. A mixture of carbon nanotubes and a surface dispersant is used to prepare a monodisperse aqueous solution of carbon nanotubes by mechanical fusion, wherein the carbon nanotubes are multi-walled carbon nanotubes, the surfactant is TX-100, and the concentration of the aqueous solution of the carbon nanotubes Control at 0.2wt%, surfactant: carbon nanotube mass ratio = 5:1, mechanical fusion method mainly includes mortar grinding, magnetic stirring, ultrasonic dispersion, high-speed centrifugation.
[0023] b. Pour the monodisperse aqueous solution of carbon nanotubes into the upper container of the vacuum suction filter device and filter on the filter membrane to form a membrane. The filter membrane is a PTFE membrane of 0.22 μm, and the vacuum degree is controlled to be 40-76kpa.
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Embodiment 2
[0031] refer to figure 1 , figure 2 , a method for preparing a temperature sensor based on a carbon nanotube three-dimensional network film, is achieved through the following steps:
[0032] a. A mixture of carbon nanotubes and a surface dispersant is used to prepare a monodisperse aqueous solution of carbon nanotubes by mechanical fusion, wherein the carbon nanotubes are selected from multi-walled carbon nanotubes, single-walled carbon nanotubes, and functionalized carbon nanotubes. TX-100, SDS, SDBS are selected as the agent, the concentration of the aqueous solution of carbon nanotubes is controlled at 0.01wt%, the surfactant: carbon nanotubes (mass ratio) = 20:1, and the mechanical fusion method mainly includes mortar grinding, magnetic stirring, Ultrasonic dispersion, high-speed centrifugation.
[0033] b. Pour the monodisperse aqueous solution of carbon nanotubes into the upper container of the vacuum suction filter device and filter on the filter membrane to form a m...
Embodiment 3
[0038] refer to figure 1 , figure 2 , a method for preparing a temperature sensor based on a carbon nanotube three-dimensional network film, is achieved through the following steps:
[0039] a. A mixture of carbon nanotubes and a surface dispersant is used to prepare a monodisperse aqueous solution of carbon nanotubes by mechanical fusion, wherein carbon nanotubes are selected from multi-walled carbon nanotubes, single-walled carbon nanotubes, and functionalized carbon nanotubes. TX-100, SDS, SDBS are selected as the agent, the concentration of the aqueous solution of carbon nanotubes is controlled at 2.5wt%, the surfactant: carbon nanotubes (mass ratio) = 5:1, and the mechanical fusion method mainly includes mortar grinding, magnetic stirring, Ultrasonic dispersion, high-speed centrifugation.
[0040] b. Pour the monodisperse aqueous solution of carbon nanotubes into the upper container of the vacuum suction filtration device and filter on the filter membrane to form a mem...
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