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Boric oxide fibre moisture-proof coating material and method of manufacturing the same

A technology of moisture-proof coating and boron oxide, which is applied in the field of special ceramics, can solve the problems that boron oxide fibers are not suitable, and achieve the effects of simple and reasonable preparation method, improved comprehensive performance, and increased strength

Active Publication Date: 2012-06-13
ZHONGCAI HIGH NEW MATERIAL +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, there are no reports at home and abroad on the moisture-proof coating applied to boron oxide fibers, and the coating materials used for other inorganic fibers, such as glass fibers and carbon fibers, are not suitable for boron oxide fibers.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] Pour 500ml of liquid paraffin into an 800ml beaker, and then put 25g of p-dichlorobenzene, and then heat and stir with a magnetic stirring device. The temperature of the solution is controlled at 55°C. When the p-dichlorobenzene is completely melted, the moisture-proof coating of boron oxide fiber of the present invention is obtained. Layer material.

Embodiment 2

[0021] Pour 500ml of liquid paraffin into an 800ml beaker, then put 50g of p-dichlorobenzene, and then use a magnetic stirring device to heat and stir. The temperature of the solution is controlled at 55°C. When the p-dichlorobenzene is completely melted, the moisture-proof coating of boron oxide fiber of the present invention is obtained. Layer material.

Embodiment 3

[0023] Pour 500ml of liquid paraffin into an 800ml beaker, then put 100g of p-dichlorobenzene, and then use a magnetic stirring device to heat and stir. The temperature of the solution is controlled at 60°C. When the p-dichlorobenzene is completely melted, the boron oxide fiber moisture-proof coating of the present invention can be obtained. Layer material.

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PUM

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Abstract

The invention relates to a boric oxide fiber damp-proof coating material and the production method thereof, and belongs to the technical field of special ceramic. The invention comprises the steps as follows: liquid paraffin and paradichlorobenzene are mixed in the ratio of 100ml: (5 to 30) g. The liquid paraffin is mixed with the paradichlorobenzene to be heated and mixed by a magnetism mixing device with the heating temperature of 40 to 80 DEG C till the paradichlorobenzene unfreezes completely and the solution is cooled to the room temperature, then the damp-proof coating material for the boric oxide fiber is obtained. The coating material of the invention has the functions of drawing lubrication, and preventing the boric oxide fiber from pulverization. The material is coated at the surface of the front boric oxide fiber and can form a layer of thick protective films at the boric oxide fiber surface, and separates the corrosion of water to the boric oxide fiber, improves the intensity of the boric oxide fiber obviously, thereby improving the integrative performance of the boric oxide fiber and having good basis for research of the fiber reinforcing ceramics composite material. The invention which has simple and reasonable production method is convenient and practical.

Description

Technical field [0001] The invention relates to a boron oxide fiber moisture-proof coating material and a preparation method thereof, and belongs to the technical field of special ceramics. Background technique [0002] As a new type of inorganic material, high-performance boron nitride fiber has a comprehensive performance that determines the excellent performance of composite materials reinforced with it. It occupies an indispensable and important position in the fields of aviation, aerospace and missile weapon technology. In China, the preparation method of boron nitride fiber mainly uses inorganic chemical conversion method. Firstly, boric acid is melted into glass body, and then boron oxide fiber is drawn by drawing furnace. Boron oxide fiber is converted into nitride after low temperature and high temperature nitridation. Boron fiber. Because boron oxide fiber is easy to absorb moisture and powder, it affects the comprehensive performance of boron nitride fiber. For this ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C03C25/24
Inventor 程之强张铭霞唐杰王重海徐鸿照杨辉代丽丽
Owner ZHONGCAI HIGH NEW MATERIAL
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