Adjustable support structure for mounting fire hydrant cabinet with arc-shaped structural surface
By designing an adjustable bracket structure for arc-shaped structural surface, the problem of fixed connection and overall appearance of the fire hydrant box on arc-shaped structural surface is solved, and a stable, beautiful and adaptable installation effect is achieved.
Patent Information
- Application Number
- CN202422125495.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-30
AI Technical Summary
When installing a fire hydrant box on a curved structural surface, how to ensure the fixed strength and overall appearance effect, especially when the structural surface is small.
An adjustable bracket structure is designed, including an arc-shaped structure, a base assembly, a docking assembly and a back cover assembly. Through the combination and adjustment of these components, the stable installation of the fire hydrant box on the arc-shaped structural surface is achieved.
The design ensures the firm connection and beautiful appearance of the fire hydrant box through pre-assembly and adaptive adjustment, and meets the installation needs of different working conditions.
Smart Images

Figure CN222911238U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fire hydrant box installation, and particularly relates to an adjustable support structure for installing a fire hydrant box on an arc-shaped structural surface. Background Technique
[0002] In the past, during the installation construction of fire hydrant boxes, they were basically installed on walls or square columns, and the boxes could fit well with the structural surface. It was rarely or even never encountered to install on an arc-shaped structural surface. Therefore, how to install a fire hydrant box on an arc-shaped structural surface, how to ensure the fixing strength of the fire hydrant box when the contact between the fire hydrant box and the structural surface is small, and how to ensure the overall visual effect of the installation of the fire hydrant box require targeted design. Content of the Utility Model
[0003] The utility model provides an adjustable support structure for installing a fire hydrant box on an arc-shaped structural surface, which is used to solve technical problems such as the fixed connection, adjustment, and convenient installation of the fire hydrant box on the arc-shaped structure.
[0004] To achieve the above object, the utility model adopts the following technical scheme:
[0005] An adjustable support structure for installing a fire hydrant box on an arc-shaped structural surface includes an arc-shaped structure, a group of base components connected to the arc-shaped structure, a docking component correspondingly connected to the base components, a back rib component connected to the docking component, and a fire hydrant box correspondingly connected to the back rib component;
[0006] There are at least four base components corresponding to the four corners of the fire hydrant box. Each base component includes a base body and a base connecting bolt connecting the base body and the arc-shaped structure;
[0007] There are two back rib components, and each back rib component is arranged along the length direction of the fire hydrant box;
[0008] The docking component includes a main docking plate, a back rib docking plate connected between the main docking plate and the back rib, a main docking plate adjustment hole arranged on the main docking plate, a back rib docking plate adjustment hole arranged on the back rib docking plate, a docking connecting bolt connecting the main docking plate adjustment hole and the back rib docking plate adjustment hole, a plate-rib docking bolt connecting the back rib docking plate and the back rib component, and a plate-seat docking bolt connecting the main docking plate and the base body.
[0009] Further, the arc-shaped structure is a frame structure, a steel structure or a masonry structure; the outer side surface of the arc-shaped structure is an arc surface.
[0010] Further, the back brace assembly includes a back brace main body and a back brace connecting bolt connected between the back brace main body and the fire hydrant box. The back brace connecting bolt is a right-angle angle steel part, and the back brace main body is pre-installed on the fire hydrant box. Adjacent back brace main bodies are connected by this back brace. This back brace is an angle steel or a straight steel plate.
[0011] Further, the base main body is a right-angle angle part, and a buffer gasket is also provided between one side of the right-angle angle part and the side surface of the arc-shaped structure body; or one side of the right-angle angle part is arc-shaped, and its radian corresponds to the radian of the arc-shaped structure body.
[0012] Further, the main docking plate is a straight plate, and a main docking plate adjustment hole is provided in the middle of the long side of the main docking plate; the main docking plate adjustment hole is a long elliptical strip hole.
[0013] Further, the back brace docking plate is a straight plate, and a back brace docking plate adjustment hole is provided in the middle of the long side of the back brace docking plate; the back brace docking plate adjustment hole is a long elliptical strip hole.
[0014] Further, the main docking plate adjustment hole is located below the back brace docking plate adjustment hole, and the center points of the main docking plate adjustment hole and the back brace docking plate adjustment hole are opposite to each other. The length of the main docking plate adjustment hole is greater than that of the back brace docking plate adjustment hole.
[0015] Further, the docking bolt is adjustably connected to the intersection of the main docking plate adjustment hole and the back brace docking plate adjustment hole.
[0016] The beneficial effects of the present utility model are reflected in:
[0017] 1) Through the setting of the back brace assembly, the present utility model is beneficial to ensuring the pre-assembly of the fire hydrant box during installation, ensuring the connection foundation, and facilitating quick installation;
[0018] 2) Through the setting of the docking assembly, the present utility model is beneficial to ensuring the adaptive adjustment during installation, enabling the fire hydrant box to be installed more safely and beautifully under different working conditions;
[0019] 3) Through the setting of the base assembly, the present utility model is beneficial to ensuring the firmness of the connection of the fire hydrant box and serving as the connection foundation for the docking assembly.
[0020] Other features and advantages of the present utility model will be described in the subsequent description, and will be partially obvious from the description, or will be understood by implementing the present utility model; the main purpose and other advantages of the present utility model can be achieved and obtained through the solutions specifically pointed out in the description. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is an installation schematic diagram of an adjustable bracket structure for installing a fire hydrant box on an arc-shaped structural surface Figure 1 ;
[0022] Figure 2 Schematic installation diagram of an adjustable support structure for installing a fire hydrant box on an arc-shaped structural surface Figure 2 ;
[0023] Figure 3 Schematic connection structure of the docking component, base component and back rib component Figure 1 ;
[0024] Figure 4 Schematic connection structure of the docking component, base component and back rib component Figure 2 .
[0025] Reference numerals: 1 - arc-shaped structure body, 2 - fire hydrant box, 3 - back rib component, 31 - back rib main body, 32 - back rib connecting bolt, 4 - base component, 41 - base main body, 42 - base connecting bolt, 5 - docking component, 51 - main docking plate, 52 - main docking plate adjustment hole, 53 - back rib docking plate, 54 - back rib docking plate adjustment hole, 55 - docking connecting bolt, 56 - plate-rib docking bolt, 57 - plate-base docking bolt. Detailed implementation manners
[0026] Taking a certain concrete structure as an example, the structural surface of this structure is arc-shaped. To ensure the effective fixed installation of the fire hydrant box, it is connected and fixed through an adjustable support. As Figures 1 to 4 shown, the adjustable support structure for installing the fire hydrant box 2 on the arc-shaped structural surface includes an arc-shaped structure body 1, a group of base components 4 connected to the arc-shaped structure body, a docking component 5 correspondingly connected to the base component 4, a back rib component 3 connected to the docking component 5, and a fire hydrant box 2 correspondingly connected to the back rib component 3.
[0027] In this embodiment, there are at least four base components 4 corresponding to the four corners of the fire hydrant box 2. The base component 4 includes a base main body 41 and a base connecting bolt 42 connecting the base main body 41 and the arc-shaped structure body 1; there are two back rib components 3, and each back rib component 3 is arranged along the long side of the fire hydrant box 2; the base main body 41 is a right-angle corner piece, and a buffer gasket is also arranged between one side of the right-angle corner piece and the side surface of the arc-shaped structure body 1; or one side of the right-angle corner piece is arc-shaped, and its radian corresponds to the radian of the arc-shaped structure body 1. Among them, the base connecting bolt 42 is an expansion bolt.
[0028] In this embodiment, the docking component 5 includes a main docking plate 51, a back rib docking plate 53 connected between the main docking plate 51 and the back rib, a main docking plate adjustment hole 52 arranged on the main docking plate 51, a back rib docking plate adjustment hole 54 arranged on the back rib docking plate 53, a docking connecting bolt 55 connecting the main docking plate adjustment hole 52 and the back rib docking plate adjustment hole 54, a plate-rib docking bolt 56 connecting the back rib docking plate 53 and the back rib component, and a plate-base docking bolt 57 connecting the main docking plate 51 and the base main body 41.
[0029] In this embodiment, the back brace assembly 3 includes a back brace main body and a back brace connecting bolt 32 connected between the back brace main body 31 and the fire hydrant box. The back brace main body 31 is a right-angle angle steel member, and the back brace main body 31 is pre-installed on the fire hydrant box 2; adjacent back brace main bodies 31 are connected by this back brace, and this back brace is an angle steel or a straight steel plate.
[0030] In this embodiment, the main docking plate 51 is a straight plate, and a main docking plate adjustment hole 52 is provided in the middle of the long side of the main docking plate 51; the main docking plate adjustment hole 52 is an oblong hole. The back brace docking plate 53 is a straight plate, and a back brace docking plate adjustment hole 54 is provided in the middle of the long side of the back brace docking plate 53; the back brace docking plate adjustment hole 54 is an oblong hole.
[0031] In this embodiment, the main docking plate adjustment hole 52 is located below the back brace docking plate adjustment hole 54 and the centers of the main docking plate adjustment hole 52 and the back brace docking plate adjustment hole 54 are opposite to each other, and the length of the main docking plate adjustment hole 52 is greater than that of the back brace docking plate adjustment hole 54. The docking connecting bolt 55 is adjustably connected to the intersection of the main docking plate adjustment hole 52 and the back brace docking plate adjustment hole 54.
[0032] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be thought of by those skilled in the art within the technical scope disclosed by the present invention should be covered by the protection scope of the present invention.
Claims
1. An adjustable bracket structure for installing a fire hydrant box on an arc-shaped structural surface, characterized in that: It comprises an arc-shaped structure (1), a group of base components (4) connected to the arc-shaped structure, a docking component (5) correspondingly connected to the base component (4), a back-rib component (3) connected to the docking component (5), and a fire hydrant box (2) connected to the back-rib component (3); A group of base components (4) is provided with at least four corresponding to the four corners of the fire hydrant box (2), wherein the base components (4) include a base body (41) and a base connecting bolt (42) connected between the base body (41) and the arc-shaped structure (1); Two back rib components (3) are provided, and each back rib component (3) is arranged along the length of the fire hydrant box (2); The docking assembly (5) comprises a main docking plate (51), a back-ribbed docking plate (53) connected between the main docking plate (51) and the back-ribbed, a main docking plate adjustment hole (52) provided on the main docking plate (51), a back-ribbed docking plate adjustment hole (54) provided on the back-ribbed docking plate (53), a docking connecting bolt (55) connected between the main docking plate adjustment hole (52) and the back-ribbed docking plate adjustment hole (54), a plate-ribbed docking bolt (56) connected between the back-ribbed docking plate (53) and the back-ribbed assembly (3), and a plate-base docking bolt (57) connected between the main docking plate (51) and the base body (41).
2. The adjustable bracket structure for installing a fire hydrant box on a curved structural surface as claimed in claim 1, characterized in that: The arc-shaped structure (1) is a frame structure, a steel structure or a masonry structure; the outer side surface of the arc-shaped structure (1) is an arc-shaped surface.
3. The adjustable bracket structure for installing a fire hydrant box on a curved structural surface as claimed in claim 1, characterized in that: The back corrugation assembly (3) comprises a back corrugation body and a back corrugation connecting bolt (32) connected between the back corrugation body (31) and the fire hydrant box, wherein (31) is a right-angle steel member, and the back corrugation body (31) is pre-installed on the fire hydrant box (2); adjacent back corrugation bodies (31) are connected via the back corrugation, and the back corrugation is an angle steel or a straight steel plate.
4. The adjustable bracket structure for installing a fire hydrant box on a curved structural surface as claimed in claim 1, characterized in that: The base body (41) is a right-angled corner piece, and a buffer gasket is provided between one side of the right-angled corner piece and the side of the arc-shaped structure (1); or one side of the right-angled corner piece is arranged in an arc shape, and its arc corresponds to the arc of the arc-shaped structure (1).
5. The adjustable bracket structure for installing a fire hydrant box on a curved structural surface as claimed in claim 1, characterized in that: The main docking plate (51) is a straight plate, and a main docking plate adjustment hole (52) is provided in the middle of the main docking plate (51) in the longitudinal direction; the main docking plate adjustment hole (52) is an elongated elliptical hole.
6. The adjustable bracket structure for installing a fire hydrant box on a curved structural surface as claimed in claim 5, characterized in that: The back-ribbed butt joint plate (53) is a straight-line plate, and a back-ribbed butt joint plate adjustment hole (54) is provided in the middle of the back-ribbed butt joint plate (53) in the longitudinal direction; the back-ribbed butt joint plate adjustment hole (54) is an elongated elliptical hole.
7. An adjustable bracket structure for installing a fire hydrant box on an arc-shaped structural surface as claimed in claim 6, characterized in that: The main docking plate adjustment hole (52) is located below the back rib docking plate adjustment hole (54), and the center points of the main docking plate adjustment hole (52) and the back rib docking plate adjustment hole (54) are opposite, and the main docking plate adjustment hole (52) is longer than the back rib docking plate adjustment hole (54).
8. The adjustable bracket structure for installing a fire hydrant box on an arc-shaped structural surface as claimed in claim 7, characterized in that: The butt joint bolt (55) is adjustably connected to the intersection of the main butt joint plate adjustment hole (52) and the back rib butt joint plate adjustment hole (54).