CN209112397U - A kind of buoy guiding tube - Google Patents
A kind of buoy guiding tube Download PDFInfo
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- CN209112397U CN209112397U CN201821703993.9U CN201821703993U CN209112397U CN 209112397 U CN209112397 U CN 209112397U CN 201821703993 U CN201821703993 U CN 201821703993U CN 209112397 U CN209112397 U CN 209112397U
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- carbon cloth
- guiding tube
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Abstract
A kind of buoy guiding tube, the guiding tube is a hollow cylinder, the side wall of cylinder is that 4 layers of carbon cloth are pasted by epoxy resin, the structure of 4 layers of carbon cloth is, fiber filament in first layer carbon cloth is laid with along 0 ° of direction of level, second layer carbon cloth fiber filament is laid with along 45 ° of directions of level, and third layer is laid with along horizontal -45 ° of directions, and the 4th layer of carbon cloth fiber filament is laid with along 90 ° of directions of level.The utility model provides a kind of guiding tube, and cylinder lateral wall is pasted using 4 layers of carbon cloth, and weight mitigates significantly, and intensity is but bigger than metal cylinder.
Description
Technical field
The utility model relates to a kind of guiding tube, especially a kind of buoy guiding tube.
Background technique
Currently, buoy guiding tube is all metal material production, a kind of entire structure of cylinder lateral wall, such design weight
Greatly, and intensity is not high.
Utility model content
The utility model provides a kind of guiding tube, and cylinder lateral wall is pasted using 4 layers of carbon cloth, and weight subtracts significantly
Gently, intensity is but bigger than metal cylinder.
To realize that above-mentioned function, the technical solution adopted in the utility model are as follows:
A kind of buoy guiding tube, the guiding tube are a hollow cylinder, and the side wall of cylinder is that 4 layers of carbon cloth pass through ring
Oxygen resin is pasted.
Further, the structure of 4 layers of carbon cloth is that the fiber filament in first layer carbon cloth is along 0 ° of side of level
To laying, second layer carbon cloth fiber filament is laid with along 45 ° of directions of level, and third layer is laid with along horizontal -45 ° of directions, and the 4th layer
Carbon cloth fiber filament is laid with along 90 ° of directions of level.
Further, the side wall is compact structure.
Further, several circular holes are provided on the side wall.
Further, the side wall is netted engraved structure.
Further, flange is provided on the outside of the guiding tube side wall bottom end and middle part of the compact structure.
Further, the flange is combined by 4 layers of carbon cloth by epoxy resin.
Further, the structure of 4 layers of carbon cloth of the flange is that the fiber filament in first layer carbon cloth is along 0 °
Direction is laid with, and second layer carbon cloth fiber filament is laid with along 45 ° of directions, and third layer is laid with along -45 ° of directions, the 4th layer of carbon fiber
Measuring fiber silk is laid with along 90 ° of directions.
The advantages of the utility model: the guiding tube design of the utility model has compact structure and two kinds of hollow out designs, is applicable in
Range is wider;Side wall is pasted using 4 layers of carbon cloth, and weight is lighter, and intensity is bigger.
Detailed description of the invention
Fig. 1 is the overall structure diagram of the closely knit side wall of the utility model.
Fig. 2 is the overall structure diagram that the utility model is provided with circular hole side wall.
Fig. 3 is the overall structure diagram of the netted hollow out side wall of the utility model.
Fig. 4 is the structural schematic diagram of 4 layers of carbon cloth of the utility model.
Indicate in figure: 1- side wall, 2- flange.
Specific embodiment
Technical solutions of the utility model are described in detail with reference to the accompanying drawing:
Such as Fig. 1, Fig. 2, Fig. 3, Fig. 4, a kind of buoy guiding tube, the guiding tube is a hollow cylinder, the side wall of cylinder
It is pasted for 4 layers of carbon cloth by epoxy resin, using 4 layers of carbon cloth substituted metal body sidewall, significantly reduces and lead
Draw the weight of cylinder, also opposing metallic body is greatly improved intensity.
Specific embodiment 1
Such as Fig. 1, Fig. 2, Fig. 3, Fig. 4, a kind of buoy guiding tube, the guiding tube is a hollow cylinder, the side wall of cylinder
It is pasted for 4 layers of carbon cloth by epoxy resin, the structure of 4 layers of carbon cloth is the fiber in first layer carbon cloth
Silk is laid with along 0 ° of direction of level, and second layer carbon cloth fiber filament is laid with along 45 ° of directions of level, and third layer is along horizontal -45 ° of directions
It being laid with, the 4th layer of carbon cloth fiber filament is laid with along 90 ° of directions of level, the carbon cloth that four kinds of different directions fiber filaments are laid with,
Further enhance the intensity and toughness of side wall.
Specific embodiment 2
Such as Fig. 1, Fig. 4, a kind of buoy guiding tube, the guiding tube is a hollow cylinder, and the side wall of cylinder is 4 layers of carbon fiber
Wei Bu is pasted by epoxy resin, and the structure of 4 layers of carbon cloth is that the fiber filament in first layer carbon cloth is along 0 ° of level
Direction is laid with, and second layer carbon cloth fiber filament is laid with along 45 ° of directions of level, and third layer is laid with along horizontal -45 ° of directions, and the 4th
Layer carbon cloth fiber filament is laid with along 90 ° of directions of level, and the side wall is compact structure, when guiding tube is horizontal positioned, is needed
When the big guiding tube of intensity, the guiding tube of compact structure side wall just seems as important.
Specific embodiment 3
Such as Fig. 2, Fig. 3, Fig. 4, a kind of buoy guiding tube, the guiding tube is a hollow cylinder, and the side wall of cylinder is 4 layers
Carbon cloth is pasted by epoxy resin, the structure of 4 layers of carbon cloth are as follows: the fiber filament in first layer carbon cloth is along water
Flat 0 ° of direction is laid with, and second layer carbon cloth fiber filament is laid with along 45 ° of directions of level, and third layer is laid with along horizontal -45 ° of directions,
4th layer of carbon cloth fiber filament is laid with along 90 ° of directions of level, and the side wall is provided with several circular holes or side wall is netted engraves
Hollow structure, when guiding tube is horizontally arranged, such as the guiding tube being arranged on storage bin, side wall is provided with several circular holes or side wall is net
Shape engraved structure can mitigate the weight of guiding tube significantly.
Specific embodiment 4
Such as Fig. 1, Fig. 4, a kind of buoy guiding tube, the guiding tube is a hollow cylinder, and the side wall of cylinder is 4 layers of carbon fiber
Wei Bu is pasted by epoxy resin, is provided with flange on the outside of the side wall bottom end and middle part, the flange is also by 4
Layer carbon cloth is combined by epoxy resin, and the structure of 4 layers of carbon cloth of side wall and flange is equal are as follows: first layer carbon cloth
In fiber filament be laid with along 0 ° of direction of level, second layer carbon cloth fiber filament is laid with along 45 ° of directions of level, and third layer is along water
Flat -45 ° of directions are laid with, and the 4th layer of carbon cloth fiber filament is laid with along 90 ° of directions of level, are provided to enhance side wall and flange
Intensity and toughness.
Claims (8)
1. a kind of buoy guiding tube, which is characterized in that the guiding tube is a hollow cylinder, and the side wall of cylinder is 4 layers of carbon fiber
Wei Bu is combined by epoxy resin.
2. buoy guiding tube according to claim 1, which is characterized in that the structure of 4 layers of carbon cloth is first
Fiber filament in layer carbon cloth is laid with along 0 ° of direction of level, and second layer carbon cloth fiber filament is laid with along 45 ° of directions of level, the
Three layers are laid with along horizontal -45 ° of directions, and the 4th layer of carbon cloth fiber filament is laid with along 90 ° of directions of level.
3. buoy guiding tube according to claim 1, which is characterized in that the side wall is compact structure.
4. buoy guiding tube according to claim 1, which is characterized in that be provided with several circular holes on the side wall.
5. buoy guiding tube according to claim 1, which is characterized in that the side wall is netted engraved structure.
6. buoy guiding tube according to claim 3, which is characterized in that be respectively provided on the outside of the side wall bottom end and middle part
There is flange.
7. buoy guiding tube according to claim 6, which is characterized in that the flange passes through ring by 4 layers of carbon cloth
Oxygen resin compounded forms.
8. buoy guiding tube according to claim 7, which is characterized in that the structure of 4 layers of carbon cloth is first
Fiber filament in layer carbon cloth is laid with along 0 ° of direction, and second layer carbon cloth fiber filament is laid with along 45 ° of directions, third layer edge-
45 ° of directions are laid with, and the 4th layer of carbon cloth fiber filament is laid with along 90 ° of directions.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821703993.9U CN209112397U (en) | 2018-10-18 | 2018-10-18 | A kind of buoy guiding tube |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821703993.9U CN209112397U (en) | 2018-10-18 | 2018-10-18 | A kind of buoy guiding tube |
Publications (1)
Publication Number | Publication Date |
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CN209112397U true CN209112397U (en) | 2019-07-16 |
Family
ID=67201622
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201821703993.9U Active CN209112397U (en) | 2018-10-18 | 2018-10-18 | A kind of buoy guiding tube |
Country Status (1)
Country | Link |
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CN (1) | CN209112397U (en) |
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2018
- 2018-10-18 CN CN201821703993.9U patent/CN209112397U/en active Active
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