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A kind of preparation method of ultra-soft and lightweight graphene electric heating film

A technology of graphene and electric heating film, which is applied in the direction of graphene, chemical instruments and methods, sustainable manufacturing/processing, etc., can solve the problem of heating elements without automatic constant temperature and power compensation functions, short service life of electric heating elements, and complex structure of electric heating systems and other issues, to achieve good toughness, rapid heat dissipation, and a wide range of raw material sources

Active Publication Date: 2017-10-10
杭州德烯科技集团有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, for nickel-chromium alloys, it is still insufficient in the following aspects: the density of nickel-chromium alloys is greater than 8g / cm3, and the thickness is several millimeters when used; the resistivity is low (~10-6Ω / m), and there are still low electrothermal conversion , the heating rate is small, the heating element has no automatic constant temperature and power compensation function, which makes the structure of the electric heating system complicated, and the thermal inertia is large; FeCrAl is a ferritic alloy, which has brittleness at room temperature, brittleness at 475°C and brittleness above 1000°C High-temperature brittleness, the low-temperature strength due to high-temperature brittleness eventually leads to short service life of the heating element; the alloy has poor weldability and is difficult to repair
[0004] There are two kinds of graphene electric heating films currently reported, one is graphene oxide electric heating film, which uses its resistance to generate heat, but its structure is unstable, so its heating fluctuates greatly and is uncontrollable; the other is graphite film or A fired polyimide film, however, has limited flexibility and breaks after a limited number of folds

Method used

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  • A kind of preparation method of ultra-soft and lightweight graphene electric heating film
  • A kind of preparation method of ultra-soft and lightweight graphene electric heating film
  • A kind of preparation method of ultra-soft and lightweight graphene electric heating film

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preparation example Construction

[0024] The preparation device with an in-line outlet used in the present invention is a prior art, which is a cuboid structure with a in-line die opening in the middle, and the in-line die opening is a gradually narrowing flow channel. The gradually narrowed flow channel can effectively increase the force of the flow field on the graphene sheet, which is conducive to the formation of a regular orientation structure of the graphene dispersion system.

[0025] This embodiment is only used to further illustrate the present invention, and should not be understood as limiting the protection scope of the present invention. Those skilled in the art make some non-essential changes and adjustments according to the content of the above invention, which all belong to the protection scope of the present invention .

Embodiment 1

[0026] Example 1: Preparation of Graphene Oxide without Fragmentary Super Large Sheets

Embodiment 1-1

[0028] (1) Slowly add potassium permanganate into the rapidly stirring concentrated sulfuric acid at -10°C. After fully dissolving, add graphite, stir slowly at 60 rpm for 2 hours, then stop stirring. After reacting for 6 hours, broadly distributed graphite oxide crystals were obtained respectively; there were many fragments in the graphite oxide wafers obtained at the two temperatures, which made the corresponding graphene oxide also have many fragments.

[0029] (2) The reaction solution obtained in step 1 is diluted with concentrated sulfuric acid (the dilution factor can be any multiple, and the present embodiment is diluted about 10 times), and the graphite oxide crystals are filtered out with a titanium alloy mesh sieve with a 150um aperture (140 mesh) (Reaction solution recovery), and slowly pour into rapidly stirred ice water relative to the volume of 10 times the volume of the filtered product, leave it for 2h, slowly add H2O2, to remove excess potassium permanganate i...

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Abstract

The invention discloses a preparation method of a super-soft and lightweight graphene electro-thermal film. A film is formed through assembling an ultra-large fragment-free graphene oxide solution, and a graphene sheet layer structure is repaired at a high temperature, so that inner defects of the graphene film are controlled to the greatest extent. The graphene film can realize rapid response to a high temperature of 25 DEG C to 1500 DEG C within a very short time of 1 second to 10 seconds under the voltage of 1V to 10V; the temperature rising and decreasing speed is 600 DEG C / s to 2000 DEG C / s. Meanwhile, the graphene electro-thermal film has a lot of folds and has extremely good flexibility, so that the graphene electro-thermal film is applicable to various types of flexible devices. Therefore, the graphene electro-thermal film is simple in structure and can be prepared in a large area and a large batch; the graphene electro-thermal film has the advantages of safe working voltage, high thermal conversion efficiency, good thermal conductivity, rapid response, capability of accurately controlling the temperature and good toughness, and can be used for different application environments.

Description

technical field [0001] The invention relates to flexible electrothermal materials, in particular to a method for preparing an ultra-soft and lightweight graphene electrothermal film. Background technique [0002] Graphene, a two-dimensional crystal material composed of a single carbon atomic layer, is the thinnest known material. It is called a magical material and has set off a research boom all over the world. Graphene has excellent electrical properties (electron mobility at room temperature can reach 2×10 5 cm 2 / Vs), outstanding thermal conductivity (5000W / (mK), extraordinary specific surface area (2630m 2 / g), its Young's modulus (1100GPa) and breaking strength (125GPa). Andre Geim and Konstantin Novoselov won the 2010 Nobel Prize in Physics for their contributions to graphene research. The excellent electrical and thermal conductivity of graphene completely exceeds that of metals. At the same time, graphene has the advantages of high temperature resistance and cor...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C01B32/184
CPCC01B2204/22C01B2204/24Y02P20/10
Inventor 高超彭蠡刘峥王冉
Owner 杭州德烯科技集团有限公司
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