CN210239242U - Glass fiber reinforced plastic tarpaulin house - Google Patents
Glass fiber reinforced plastic tarpaulin house Download PDFInfo
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- CN210239242U CN210239242U CN201920703177.6U CN201920703177U CN210239242U CN 210239242 U CN210239242 U CN 210239242U CN 201920703177 U CN201920703177 U CN 201920703177U CN 210239242 U CN210239242 U CN 210239242U
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- fiber reinforced
- glass fiber
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Abstract
The utility model discloses a glass fiber reinforced plastic tarpaulin house, which comprises an integrally formed pyramid-shaped roof, wherein a plurality of stand columns are arranged below the roof, the bottom ends of the stand columns are connected with a bottom plate, and a glass fiber reinforced plastic ground is arranged in a space enclosed by the stand columns and is fixedly connected with each stand column; a glass fiber reinforced plastic wall surface is arranged between the adjacent upright columns; a sliding door is arranged on one side of the glass fiber reinforced plastic wall surface, and windows and/or shutters are arranged on the other side of the glass fiber reinforced plastic wall surface; a plurality of transverse plates are arranged between two adjacent upright posts. The utility model discloses making by anticorrosive material glass steel and forming, the preparation can one shot forming play fine sealed effect, has characteristics such as anticorrosion, antiseep, high temperature resistant, longe-lived, simple installation, adapts to the changeable complicated weather of salt pan production, good insulating properties, and the quality light intensity of glass steel material is high, makes the light-dutyization of house, convenient to install and use.
Description
Technical Field
The utility model belongs to a building that the device of covering is moulded to salt industry equipment is used, concretely relates to glass steel is moulded and is covered room.
Background
Sea salt has a long history of production, but since sea salt production has been carried out in a place which is very close to the sea, the environment is severe, windy, humid and very corrosive, and corrosion resistance is very important for equipment used in such an environment. An important device in salt production is plastic tarpaulin equipment, which is equipment for protecting brine from being diluted by rainwater, and electric switches for controlling the equipment are arranged in a plastic tarpaulin house. The plastic tarpaulin house is generally made by splicing wooden plates, so that the plastic tarpaulin house plays a role in corrosion resistance and insulation, but the plastic tarpaulin house is easy to seep water when raining or snowing, an electric switch cabinet is easy to be affected with damp, aged and damaged, potential safety hazards exist, and unnecessary economic loss is easily caused to companies and enterprises.
SUMMERY OF THE UTILITY MODEL
The utility model is put forward in order to overcome the defects of water seepage and poor anti-corrosion capability of the plastic tarpaulin house existing in the prior art, and the purpose is to provide a glass steel-plastic tarpaulin house.
The technical scheme of the utility model is that:
a glass fiber reinforced plastic tarpaulin house comprises an integrally formed pyramid-shaped roof, wherein a plurality of stand columns are installed below the roof, the bottom ends of the stand columns are connected with a bottom plate, and a glass fiber reinforced plastic ground is arranged in a space defined by the stand columns and is fixedly connected with each stand column; the glass fiber reinforced plastic wall surfaces are arranged between the adjacent upright columns, the upper ends of the glass fiber reinforced plastic wall surfaces are hermetically connected with the roof, and the lower ends of the glass fiber reinforced plastic wall surfaces are hermetically connected with the glass fiber reinforced plastic ground; a sliding door is arranged on one side of the glass fiber reinforced plastic wall surface, and windows and/or shutters are arranged on the other side of the glass fiber reinforced plastic wall surface; a plurality of transverse plates are arranged between two adjacent upright posts, the transverse plates are arranged in a space enclosed by the glass fiber reinforced plastic wall, and the width of the transverse plates is gradually increased from top to bottom.
The length and width of the cross section of the bottom plate are larger than those of the cross section of the upright post.
And the upright post positioned below the ground of the glass fiber reinforced plastic is arranged in a field foundation.
The roof bottom forms the eaves of outside extension, eaves and roof integrated into one piece.
The utility model has the advantages that:
the utility model provides a glass steel moulds to cover room forms by anticorrosive material glass steel, and the preparation can one shot forming play fine sealed effect, has characteristics such as anticorrosion, antiseep, high temperature resistant, longe-lived, simple installation, adapts to the changeable complicated weather of salt pan production, good insulating properties, and the quality light intensity of glass steel material is high, makes the light-duty change of room, convenient to install and use.
Drawings
FIG. 1 is a schematic structural view of a glass fiber reinforced plastic tarpaulin house of the present invention;
fig. 2 is a left side view of the glass fiber reinforced plastic tarpaulin house of the utility model.
Wherein:
1 roof 2 column
3 glass fibre reinforced plastic wall 4 window
5 sliding door 6 shutter
7 glass fibre reinforced plastic floor 8 horizontal plate
9 a bottom plate.
Detailed Description
The glass fiber reinforced plastic covering house of the present invention is described in detail with reference to the drawings and the embodiments of the specification:
as shown in fig. 1 and 2, a glass fiber reinforced plastic thatch house comprises an integrally formed pyramid-shaped roof 1, a plurality of upright posts 2 are installed below the roof 1, the bottom ends of the upright posts 2 are connected with a bottom plate 9, and a glass fiber reinforced plastic ground 7 is arranged in a space enclosed by the upright posts 2 and is fixedly connected with each upright post 2; a glass fiber reinforced plastic wall surface 3 is arranged between the adjacent upright posts 2, the upper end of the glass fiber reinforced plastic wall surface 3 is hermetically connected with the roof 1, and the lower end of the glass fiber reinforced plastic wall surface 3 is hermetically connected with a glass fiber reinforced plastic ground 7; a sliding door 5 is arranged on one side glass fiber reinforced plastic wall surface 3, and windows 4 and/or shutters 6 are arranged on the other side glass fiber reinforced plastic wall surfaces 3; a plurality of transverse plates 8 are arranged between two adjacent upright posts 2, the transverse plates 8 are arranged in the space enclosed by the glass fiber reinforced plastic wall surface 3, and the width of the transverse plates 8 is gradually increased from top to bottom.
The length and width of the cross section of the bottom plate 9 are greater than those of the cross section of the upright post 2, so that the upright post 2 can be firmly fixed, and the whole house is more stable.
And the upright post 2 positioned below the position of the glass fiber reinforced plastic ground 7 is arranged in a field foundation.
The roof 1 bottom forms the eaves of outside extension, eaves and roof 1 integrated into one piece.
The wall surface 3 is made of glass steel, so that the wall surface has good tightness and effectively prevents the occurrence of corrosion.
The window 4 is a plastic steel window made of common materials and used for ventilation.
The sliding door 5 is also made of glass fiber reinforced plastic, and like the wall surface 3, a shutter 6 is arranged on the sliding door for ventilation and rain shielding, and the sliding door has better tightness than an inward and outward opening door and can resist larger wind power.
The shutter 6 is also made of glass steel and is installed on the sliding door 5, the shutter on the opposite wall surface is arranged on the wall surface, the rectangular glass steel strip is inclined at a certain angle to form the shutter, and the whole house can ventilate and can prevent rainwater from entering. The sliding door has better tightness than the door which is opened from the inside to the outside, and has windproof performance.
The glass fiber reinforced plastic ground 7 is also made of glass fiber reinforced plastic, so that people can walk on the glass fiber reinforced plastic ground, an operation space of workers is formed, the glass fiber reinforced plastic ground is flat, hard and effective in moisture prevention, a good operation environment is provided for the workers, and electric elements in a house can be effectively protected to be isolated from a humid environment.
The transverse plate 8 is also made of glass fiber reinforced plastics and can be used for storing articles and the like.
The utility model discloses a glass fiber reinforced plastic tarpaulin house, which is a small house, and utilizes the characteristics of glass fiber reinforced plastic material, solves the water seepage problem of the plastic tarpaulin house, and improves the anti-corrosion capability of the plastic tarpaulin house. The glass fiber reinforced plastic is a composite material which can be formed in one step, has good corrosion resistance, is not easy to seep water, is an excellent insulating material, can resist high temperature and has extremely high strength, so that the glass fiber reinforced plastic tarpaulin house can ensure the personal safety of operators and maintain the safety and stability of the equipment site.
The glass fiber reinforced plastic tarpaulin house has the advantages that:
1. the corrosion resistance is very strong;
2. because the glass fiber reinforced plastic is a composite material and has strong manufacturability, the glass fiber reinforced plastic tarpaulin house can be formed at one time, thereby achieving good waterproof function;
3. because the glass fiber reinforced plastic is an excellent insulating material, the glass fiber reinforced plastic covered house can play a good insulating role;
4. because the thermal conductivity of the glass fiber reinforced plastic is low, the temperature in the glass fiber reinforced plastic tarpaulin house is not too high even in hot summer, and internal electrical components are well protected from being corroded;
5. the glass fiber reinforced plastic tarpaulin house is durable due to the good fatigue resistance of the glass fiber reinforced plastic.
6. The glass fiber reinforced plastic tarpaulin house has light weight, high strength, convenient transportation, installation and maintenance,
7. the glass fiber reinforced plastic has good fatigue resistance, effectively improves the durability of the house, prolongs the service life, and saves the cost and the maintenance cost for manufacturing the house.
Claims (4)
1. A glass fiber reinforced plastic tarpaulin house is characterized in that: the roof comprises an integrally formed pyramid-shaped roof (1), wherein a plurality of stand columns (2) are arranged below the roof (1), the bottom ends of the stand columns (2) are connected with a bottom plate (9), and a glass fiber reinforced plastic floor (7) is arranged in a space surrounded by the stand columns (2) and is fixedly connected with each stand column (2); a glass fiber reinforced plastic wall surface (3) is arranged between the adjacent upright posts (2), the upper end of the glass fiber reinforced plastic wall surface (3) is hermetically connected with the roof (1), and the lower end of the glass fiber reinforced plastic wall surface is hermetically connected with a glass fiber reinforced plastic ground (7); a sliding door (5) is arranged on one side glass fiber reinforced plastic wall surface (3), and windows (4) and/or shutters (6) are arranged on the other side glass fiber reinforced plastic wall surfaces (3); a plurality of transverse plates (8) are arranged between two adjacent upright posts (2), the transverse plates (8) are arranged in a space enclosed by the glass fiber reinforced plastic wall surface (3), and the width of the transverse plates (8) is gradually increased from top to bottom.
2. The glass fiber reinforced plastic tarpaulin house of claim 1, wherein: the length and width of the cross section of the bottom plate (9) are larger than those of the cross section of the upright post (2).
3. The glass fiber reinforced plastic tarpaulin house of claim 1, wherein: and the upright post (2) positioned below the glass fiber reinforced plastic ground (7) is arranged in a site foundation.
4. The glass fiber reinforced plastic tarpaulin house of claim 1, wherein: the roof is characterized in that an outwards extending eave is formed at the bottom of the roof (1), and the eave and the roof (1) are integrally formed.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920703177.6U CN210239242U (en) | 2019-05-17 | 2019-05-17 | Glass fiber reinforced plastic tarpaulin house |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920703177.6U CN210239242U (en) | 2019-05-17 | 2019-05-17 | Glass fiber reinforced plastic tarpaulin house |
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CN210239242U true CN210239242U (en) | 2020-04-03 |
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CN201920703177.6U Active CN210239242U (en) | 2019-05-17 | 2019-05-17 | Glass fiber reinforced plastic tarpaulin house |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114086796A (en) * | 2021-09-26 | 2022-02-25 | 中建三局安装工程有限公司 | Habitable modular positive pressure cabin cluster in low-pressure environment |
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2019
- 2019-05-17 CN CN201920703177.6U patent/CN210239242U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114086796A (en) * | 2021-09-26 | 2022-02-25 | 中建三局安装工程有限公司 | Habitable modular positive pressure cabin cluster in low-pressure environment |
CN114086796B (en) * | 2021-09-26 | 2023-12-08 | 中建三局安装工程有限公司 | But living modularization's positive pressure cabin body cluster under low atmospheric pressure environment |
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