CN217645733U - Fire hydrant cabinet with sliding structure - Google Patents

Fire hydrant cabinet with sliding structure Download PDF

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Publication number
CN217645733U
CN217645733U CN202221155993.6U CN202221155993U CN217645733U CN 217645733 U CN217645733 U CN 217645733U CN 202221155993 U CN202221155993 U CN 202221155993U CN 217645733 U CN217645733 U CN 217645733U
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China
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box
chamber door
fire hydrant
overlap joint
structure according
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CN202221155993.6U
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Chinese (zh)
Inventor
洪小燕
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Tianxing Fire Equipment Group Co ltd
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Tianxing Fire Equipment Group Co ltd
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Abstract

The utility model relates to a fire hydrant case with sliding construction, its characteristics lie in including the box, the chamber door, two swing bearing assemblies, wherein seted up on the box and laid the chamber, be provided with the bearing piece on the box, swing bearing assembly sets up on the box, swing bearing assembly's expansion end ability horizontal swing, be provided with the overlap joint convex part on the chamber door, the chamber door can set up on the box with vertical sliding, the chamber door covers on the accent of laying the chamber, overlap joint convex part overlap joint is served in the activity of swing bearing assembly, after the chamber door lapse is opened, enable two overlap joint convex parts overlap joint respectively on the bearing piece that corresponds. The utility model discloses go up the chamber door and can slide down and open, this just can be through the effect of gravity, makes the chamber door be in the open mode steadily to can avoid chamber door oneself to close, and then can avoid influencing taking of fire-fighting equipment, in order to avoid the rescue time to be delayed, prevent to cause bigger loss, it has advantages such as simple structure, convenient to use, reliability height, suitability are strong.

Description

Fire hydrant cabinet with sliding structure
Technical Field
The utility model relates to a fire-fighting equipment field, especially a fire hydrant cabinet.
Background
At present, in order to store fire-fighting equipment conveniently, a fire hydrant cabinet is often used for storing the fire-fighting equipment. The chamber door of most fire hydrant case is articulated together through ordinary hinge, only can satisfy the rotation demand of chamber door through ordinary hinge, can't prescribe a limit to chamber door pivoted position. When the consumption equipment in the fire hydrant cabinet is taken, the situation that the box door swings easily occurs due to the fact that the box door is touched by accident or the shock of the fire hydrant cabinet, so that the situation that the box door is closed by oneself easily occurs, the taking of the fire-fighting equipment is influenced, the rescue time is delayed, and greater loss is easily caused. Therefore, it is necessary to redesign the structure of the hydrant cabinet.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to solve the above-mentioned problem and not enough, provide a fire hydrant case with sliding structure, chamber door can slide down and open on this fire hydrant case, this just can be through the effect of gravity, make the chamber door be in the open mode steadily to can avoid chamber door oneself to close, and then can avoid influencing taking of fire-fighting equipment, in order to avoid the rescue time to be delayed, prevent to cause bigger loss, it has advantages such as simple structure, high reliability, the suitability is strong.
The technical scheme of the utility model is realized like this:
the utility model provides a fire hydrant case with sliding construction, its characteristics lie in including box, chamber door, two swing bearing components, wherein have seted up on the antetheca of box and laid the chamber, be provided with the bearing piece on the lateral wall about the box lower extreme respectively, two swing bearing components set up respectively on the lateral wall about the box upper end to make two swing bearing components's expansion end ability horizontal hunting, be provided with the overlap joint convex part on the lateral wall about the chamber door upper end respectively, the chamber door can set up on the box with vertical slip to make the chamber door cover on laying the accent in chamber, still make two overlap joint convex parts overlap joint respectively on the activity that corresponds swing bearing component is served, after the chamber door lapse is opened, enable two overlap joint convex parts overlap joint respectively on the bearing piece that corresponds.
Preferably, a limiting clamping groove is formed in the bottom surface of the lap joint convex part and clamped at the movable end of the swinging bearing component.
Preferably, the limiting clamping groove is of an arc-shaped clamping groove structure.
Preferably, the swinging support assembly comprises a positioning seat and a longitudinal rod, the positioning seat is arranged on the side wall of the box body, the rear end of the longitudinal rod can be hinged on the positioning seat in a horizontally rotating mode, and the lap joint convex part is lapped on the front end of the longitudinal rod.
Preferably, a handle portion is provided on a front end of the longitudinal rod.
Preferably, the supporting piece comprises a positioning block and a supporting rod, the positioning block is arranged on the side wall of the box body, and the supporting rod is longitudinally arranged and enables the rear end of the supporting rod to be connected with the positioning block.
Preferably, a vertically extending T-shaped guide groove is formed in the box body, a vertically extending T-shaped protruding strip is arranged on the rear wall of the box door, and the T-shaped protruding strip is embedded in the T-shaped guide groove in a vertically sliding manner.
Preferably, a vertically extending reinforcing rod is arranged on the box body, and the T-shaped guide groove is formed in the front wall of the reinforcing rod.
Preferably, the box body is provided with two vertically extending reinforcing rods, the front walls of the two reinforcing rods are provided with vertically extending T-shaped guide grooves, and the rear wall of the box door is provided with two vertically extending T-shaped convex strips which are respectively embedded in the two T-shaped guide grooves in a vertically sliding manner.
Preferably, the left and right cavity opening edges of the placing cavity are respectively provided with abdicating notches, and the two reinforcing rods are respectively embedded in the two abdicating notches.
The utility model has the advantages that: in this hydrant cabinet, the function of supporting the door of the cabinet can be achieved by the cooperation of the swinging support member and the support member, which can facilitate the stable closing of the door of the cabinet. The supporting piece is matched with the lap joint convex part, so that the function of supporting the box door can be achieved, and the box door can be conveniently and stably opened. And set up on the box through can vertical slip with the chamber door, can not only realize like this that the chamber door is opened in the lapse, can also open the case door back in the lapse, through the effect of gravity, make the chamber door be in the open mode steadily to can avoid the chamber door oneself to close, and then can avoid influencing taking of fire-fighting equipment, in order to avoid the rescue time to be delayed, prevent to cause bigger loss, this fire hydrant box's suitability is very strong.
Adopt swing bearing subassembly, can make swing bearing subassembly's expansion end break away from the overlap joint convex part fast like this through the expansion end of swing bearing subassembly, this enables the convenience that the switch of chamber door is very, and this fire hydrant case uses very conveniently.
Can play stable bearing effect through swing bearing subassembly and bearing piece to help improving the accuracy and the stability of chamber door location, and then help improving the reliability of this fire hydrant case.
Simultaneously, the overall structure of this fire hydrant case is still fairly simple to can conveniently make, this suitability that also helps improving this fire hydrant case.
Drawings
Fig. 1 is a schematic view of the closed state of the hydrant box in the present invention.
Fig. 2 is a schematic view of the three-dimensional structure of the open state of the hydrant box of the present invention.
Fig. 3 is a schematic view of the three-dimensional structure of the middle box body of the present invention.
Fig. 4 is a schematic view of the three-dimensional structure of the middle box door of the present invention.
Fig. 5 is an enlarged schematic structural view of a portion a in fig. 4 according to the present invention.
Fig. 6 is a schematic perspective view of the swinging support assembly of the present invention.
Fig. 7 is a schematic perspective view of the middle support member of the present invention.
Detailed Description
As shown in fig. 1 and 2, a fire hydrant box with sliding structure, including box 1, chamber door 2, two swing bearing components 3, wherein seted up on the antetheca of box 1 and laid chamber 11, be provided with bearing 12 on the lateral wall about the box 1 lower extreme respectively, two swing bearing components 3 set up respectively on the lateral wall about the box 1 upper end to make the expansion end of two swing bearing components 3 can the horizontal hunting, be provided with overlap joint convex part 21 on the lateral wall about the chamber door 2 upper end respectively, chamber door 2 can set up on box 1 with vertical slip, and make chamber door 2 cover on the accent of laying chamber 11, still make two overlap joint convex parts 21 overlap joint respectively on the activity end that corresponds swing bearing components 3, after chamber door 2 slides downwards and opens, enable two overlap joint convex parts 21 overlap joint respectively on corresponding bearing 12.
In this hydrant cabinet, by the cooperation of the swinging support member 3 and the support member 12, the function of supporting the door 2 can be achieved, which can facilitate the stable closing of the door 2. The supporting member 12 is engaged with the overlapping convex portion 21, so that the door 2 can be supported, which facilitates the door 2 to be stably opened. And through setting up chamber door 2 on box 1 with vertical slip, can not only realize the purpose that box door 2 was opened in the lapse like this, can also open chamber door 2 back in the lapse, through the effect of gravity, make chamber door 2 be in the open mode steadily to can avoid chamber door 2 oneself to close, and then can avoid influencing taking of fire-fighting equipment, in order to avoid the rescue time to be delayed, prevent to cause bigger loss, this fire hydrant case's suitability is very strong.
Adopt swing bearing subassembly 3, can make the expansion end of swing bearing subassembly 3 break away from overlap joint convex part 21 fast through the expansion end of swing bearing subassembly 3 like this, this can make the convenience that the switch of chamber door 2 is very, and this fire hydrant case uses very conveniently.
Can play stable bearing effect through swing bearing subassembly 3 and supporting piece 12 to help improving the accuracy and the stability of chamber door 2 location, and then help improving the reliability of this fire hydrant case.
Simultaneously, the overall structure of this fire hydrant case is still fairly simple to can conveniently make, this suitability that also helps improving this fire hydrant case.
As shown in fig. 1, by arranging both the oscillating supporting members 3 on the upper side wall of the box body 1, both the overlapping projections 21 are arranged on the upper side wall of the door 2. This allows the pendulum support element 3 and the overlapping projections 21 to be in a high position to avoid child mishandling, which helps to increase safety.
In practical application, the fire hydrant cabinet is fixed on a wall, and a movable space of the cabinet door 2 is reserved between the cabinet body 1 and the ground. Thus, the opening requirement of the box door 2 can be well met, and the actual use requirement can be well met.
As shown in fig. 1, 4 and 5, a limiting slot 211 is formed on a bottom surface of the overlapping protrusion 21, and the limiting slot 211 is clamped at the movable end of the swinging support assembly 3. This helps to further improve the stability and reliability of the fit between the swinging support member 3 and the overlapping protrusion 21, and thus helps to further improve the stability and reliability of the closing of the box door 2, and further helps to further improve the reliability and applicability of the fire hydrant box.
As shown in fig. 4 and 5, the limiting locking groove 211 is an arc-shaped locking groove structure. Can guarantee the stability that the card was put like this to reduce the probability that rocking appears in swing bearing subassembly 3, and the expansion end swing that just can conveniently swing bearing subassembly 3 like this breaks away from spacing draw-in groove 211, and this helps further improving complex stability and reliability, and can facilitate the use.
As shown in fig. 1, 2 and 6, the swinging support assembly 3 includes a positioning seat 31 and a longitudinal rod 32, the positioning seat 31 is disposed on the side wall of the box body 1, the rear end of the longitudinal rod 32 is hinged on the positioning seat 31 in a horizontally rotatable manner, and the overlapping convex part 21 overlaps the front end of the longitudinal rod 32. This swing bearing subassembly 3's structure is very simple reliable, and it can not only play very good bearing effect, can also facilitate the use to help further improving this fire hydrant case's reliability and suitability.
As shown in fig. 6, a handle 321 is provided on the front end of the longitudinal rod 32. This facilitates the swinging of the longitudinal bar 32, thereby contributing to further improvement in convenience of use.
As shown in fig. 1, 2 and 7, the supporting member 12 includes a positioning block 121 and a supporting rod 122, the positioning block 121 is disposed on a side wall of the box body 1, and the supporting rod 122 is disposed longitudinally, and a rear end of the supporting rod 122 is connected to the positioning block 121. This bearing 12's structure is very simple reliable, and it can not only play very good bearing effect, and it is fixed to also can be easy to assemble to help further improving this fire hydrant case's reliability and suitability.
As shown in fig. 2, when the door 2 is in the open state, the overlapping convex portion 21 overlaps the front end of the support rod 122. Therefore, a very good bearing and limiting effect can be achieved, and the requirement of practical use can be well met.
As shown in fig. 1 to 5, a T-shaped guide slot 13 extending vertically is provided on the box body 1, and a T-shaped protrusion 22 extending vertically is provided on the rear wall of the box door 2, and the T-shaped protrusion 22 is vertically slidably inserted into the T-shaped guide slot 13. This not only helps improving the reliability and the stability of chamber door 2 and the equipment of box 1, also helps improving the stability and the reliability of chamber door 2 vertical slip to help further improving the reliability and the suitability of this fire hydrant case.
As shown in fig. 2 and 3, a reinforcing rod 14 extending vertically is provided on the box body 1, and the T-shaped guide groove 13 is opened on the front wall of the reinforcing rod 14. This contributes to the structural strength at the opening of T-shaped guide groove 13, and thus contributes to further improving the stability and reliability of the engagement of T-shaped rib 22 with T-shaped guide groove 13, and thus contributes to further improving the reliability of the fire hydrant cabinet.
As shown in fig. 1 to 4, two vertically extending reinforcing rods 14 are provided on the box body 1, T-shaped guide grooves 13 extending vertically are provided on front walls of the two reinforcing rods 14, two vertically extending T-shaped protruding strips 22 are provided on a rear wall of the box door 2, and the two T-shaped protruding strips 22 are respectively embedded in the two T-shaped guide grooves 13 in a vertically slidable manner. This helps further strengthening the stability and the reliability of chamber door 2 installation location to and can improve the accuracy and the stability of 2 vertical sliding on chamber door, thereby help further improving the reliability of this fire hydrant case.
As shown in fig. 2 and 3, the left and right opening edges of the placing cavity 11 are respectively provided with a relief notch 15, and the two reinforcing rods 14 are respectively embedded in the two relief notches 15. This can not only reach the purpose of two stiffener 14 of stable installation, can also avoid stiffener 14 to influence chamber door 2 and to laying the covering of 11 accent mouths in chamber to can guarantee the reliability that chamber door 2 covers, and then can guarantee that the fire hydrant case has very good guard action.
As shown in fig. 1 and 2, when the door 2 needs to be opened, the longitudinal rod 32 is firstly swung outward, so that the longitudinal rod 32 is separated from the overlapping convex part 21; at this time, the door 2 loses the supporting function of the longitudinal rod 32 and moves downwards under the action of gravity; when overlap joint convex part 21 overlap joint to the supporting piece 12 on, just can play very good bearing effect to overlap joint convex part 21 through supporting piece 12 to can guarantee that chamber door 2 is in the open mode steadily, and this can reach the purpose of opening chamber door 2 fast, and then help improving the efficiency that fire-fighting equipment took. When the door 2 needs to be closed, the bottom edge of the door 2 is held up by hand and pushed upwards, and after the lapping convex part 21 exceeds the height position of the longitudinal rod 32, the door 2 stops being pushed upwards; then, the longitudinal rod 32 is swung forwards, and the longitudinal rod 32 is placed right below the limiting clamping groove 211; finally, the hand for lifting the box door 2 is released, and the limiting clamping groove 211 is naturally clamped on the longitudinal rod 32 under the action of gravity. This enables the door 2 to be stably closed.

Claims (10)

1. The utility model provides a fire hydrant case with sliding construction which characterized in that: including box (1), chamber door (2), two swing bearing components (3), wherein seted up on the antetheca of box (1) and laid chamber (11), be provided with bearing piece (12) on the lateral wall about the box (1) lower extreme respectively, two swing bearing components (3) set up respectively on the lateral wall about box (1) upper end to make the expansion end of two swing bearing components (3) can the horizontal hunting, be provided with overlap joint convex part (21) on the lateral wall about chamber door (2) upper end respectively, chamber door (2) can set up on box (1) with vertical sliding, and make chamber door (2) cover on the accent of laying chamber (11), still make two overlap joint convex parts (21) overlap joint respectively and serve in the activity that corresponds swing bearing component (3), open the back in chamber door (2) lapse, enable two overlap joint convex parts (21) overlap joint respectively on corresponding bearing piece (12).
2. A fire hydrant cabinet with a sliding structure according to claim 1, wherein: a limiting clamping groove (211) is formed in the bottom surface of the lapping convex portion (21), and the limiting clamping groove (211) is clamped at the movable end of the swinging bearing component (3).
3. A fire hydrant cabinet with a sliding structure according to claim 2, wherein: the limiting clamping groove (211) is of an arc-shaped clamping groove structure.
4. A fire hydrant cabinet with a sliding structure according to claim 1, wherein: the swinging supporting component (3) comprises a positioning seat (31) and a longitudinal rod (32), wherein the positioning seat (31) is arranged on the side wall of the box body (1), the rear end of the longitudinal rod (32) can be hinged on the positioning seat (31) in a horizontally rotating mode, and the lap joint convex part (21) is lapped on the front end of the longitudinal rod (32).
5. A fire hydrant cabinet with a sliding structure according to claim 4, wherein: a handle part (321) is arranged at the front end of the longitudinal rod (32).
6. A fire hydrant cabinet with a sliding structure according to claim 1, wherein: the supporting piece (12) comprises a positioning block (121) and a supporting rod (122), the positioning block (121) is arranged on the side wall of the box body (1), the supporting rod (122) is longitudinally arranged, and the rear end of the supporting rod (122) is connected with the positioning block (121).
7. A fire hydrant cabinet with a sliding structure according to claim 1, wherein: the box body (1) is provided with a T-shaped guide groove (13) extending vertically, the rear wall of the box door (2) is provided with a T-shaped convex strip (22) extending vertically, and the T-shaped convex strip (22) can be embedded in the T-shaped guide groove (13) in a vertically sliding mode.
8. A fire hydrant cabinet with a sliding structure according to claim 7, wherein: the box body (1) is provided with a vertically extending reinforcing rod (14), and the T-shaped guide groove (13) is formed in the front wall of the reinforcing rod (14).
9. A fire hydrant cabinet with a sliding structure according to claim 8, wherein: the box body (1) is provided with two vertically extending reinforcing rods (14), the front walls of the two reinforcing rods (14) are provided with vertically extending T-shaped guide grooves (13), the rear wall of the box door (2) is provided with two vertically extending T-shaped convex strips (22), and the two T-shaped convex strips (22) are respectively embedded in the two T-shaped guide grooves (13) in a vertically sliding manner.
10. A fire hydrant cabinet with a sliding structure according to claim 9, wherein: the left and right cavity opening edges of the placing cavity (11) are respectively provided with abdicating notches (15), and the two reinforcing rods (14) are respectively embedded in the two abdicating notches (15).
CN202221155993.6U 2022-05-12 2022-05-12 Fire hydrant cabinet with sliding structure Active CN217645733U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221155993.6U CN217645733U (en) 2022-05-12 2022-05-12 Fire hydrant cabinet with sliding structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221155993.6U CN217645733U (en) 2022-05-12 2022-05-12 Fire hydrant cabinet with sliding structure

Publications (1)

Publication Number Publication Date
CN217645733U true CN217645733U (en) 2022-10-25

Family

ID=83663346

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221155993.6U Active CN217645733U (en) 2022-05-12 2022-05-12 Fire hydrant cabinet with sliding structure

Country Status (1)

Country Link
CN (1) CN217645733U (en)

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