Nano energy storage fuel and preparation method thereof

A nanometer and energy storage technology, applied in fuels, liquid carbon-containing fuels, petroleum industry, etc., can solve the problems of affecting fuel energy performance, affecting fuel performance, complex coating process, etc., and achieve excellent anti-settling performance and anti-settling performance. Good, good combustion performance

Active Publication Date: 2018-08-28
HUBEI INST OF AEROSPACE CHEMOTECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The materials used for the coating and modification of the above-mentioned nano-aluminum powder are all low-energy or inert materials, which affect the energy performance of the fuel, and the coating pro

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0025] Example 1

[0026] Under the protection of high-purity argon in the glove box, fully mix 0.3g of highly active nano Al powder and 0.7g of ortho-substituted hexyl carborane. After sealing, use an ultrasonic cleaner to sonicate it for 30 minutes into a uniform slurry, and place it for more than 24 hours , Add 9g JP-10, mix uniformly to make nano energy storage fuel. Pour the fuel into the 5# centrifuge tube (10ml), centrifuge at a high speed of 6500r / min for 10 minutes, the fuel is uniform and no sedimentation. Measured fuel density: 0.96g / cm 3 , Volume calorific value: 41.3MJ / L.

Example Embodiment

[0027] Example 2

[0028] Under the protection of high-purity argon in the glove box, fully mix 3.0g of highly active nano Al powder and 6.0g of ortho-substituted hexyl carborane. After sealing, use an ultrasonic cleaner to sonicate it for 30 minutes into a uniform slurry, and place it for more than 24 hours , Add 1g JP-10, mix evenly to make nano energy storage fuel. Pour the fuel into the 5# centrifuge tube (10ml), centrifuge at a high speed of 6500r / min for 10 minutes, the fuel is uniform and no sedimentation. Measured fuel density: 1.13g / cm 3 , Volume calorific value: 50.6MJ / L.

Example Embodiment

[0029] Example 3

[0030] Under the protection of high-purity argon in the glove box, fully mix 0.5g of highly active nano Al powder and 9g of ortho-substituted hexyl carborane. After sealing, use an ultrasonic cleaner to sonicate it for 15 minutes into a uniform slurry, and place it for more than 2 hours. Add 0.5g JP-10 and mix it evenly to make nano energy storage fuel. Pour the fuel into the 5# centrifuge tube (10ml), centrifuge at a high speed of 6500r / min for 10 minutes, the fuel is uniform and no sedimentation. Measured fuel density: 0.93g / cm 3 , Volume calorific value: 46.2MJ / L.

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Abstract

The invention belongs to the technical field of energy storage fuel and particularly relates to high-energy nano energy storage fuel capable of meeting the use of a missile weapon and a preparation method thereof. The energy storage fuel comprises the following components in percentage by weight: 3-30 percent of nano Al powder, 5-90 percent of liquid hydrocarbon fuel and 7-90 percent of carborane,wherein the nano Al powder is spherical and has an average particle size of less than 150 nm and an active Al content of higher than 90 percent; the liquid hydrocarbon fuel is a petroleum rectification product or synthetic hydrocarbon or two types of compositions. The nano energy storage fuel provided by the invention is high in energy, excellent ignition and combustion performances, simple in preparation method and excellent in sedimentation resistance.

Description

technical field [0001] The invention belongs to the technical field of energy storage fuels, and in particular relates to a nano energy storage fuel capable of satisfying high energy density for missile weapons and a preparation method thereof. Background technique [0002] Fuel technology is the core technology, basic technology, and even restrictive technology for the development of aerospace weapons. High energy and high density are the eternal themes of fuel development, and their performance directly determines the performance level of military power systems for missile weapons. The development trend of liquid fuels shows that high performance, high reliability, non-toxic and pollution-free, low cost, and convenient use and maintenance are the main requirements and directions for liquid propellants in future liquid power systems, and the current liquid fuel varieties cannot meet this requirement. Require. Therefore, the development of a class of high-energy-density fu...

Claims

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Application Information

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IPC IPC(8): C10L1/00C10L1/12C10L1/30
CPCC10L1/00C10L1/1208C10L1/30
Inventor 王芳李伟付晓梦王伟庞爱民秦超
Owner HUBEI INST OF AEROSPACE CHEMOTECH
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