CN215010979U - Signal control cabinet for constructional engineering construction - Google Patents

Signal control cabinet for constructional engineering construction Download PDF

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Publication number
CN215010979U
CN215010979U CN202120750124.7U CN202120750124U CN215010979U CN 215010979 U CN215010979 U CN 215010979U CN 202120750124 U CN202120750124 U CN 202120750124U CN 215010979 U CN215010979 U CN 215010979U
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cabinet
cabinet body
sliding
close
gear
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CN202120750124.7U
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Chinese (zh)
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李行
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Guizhou Hengyi Tongtong Traffic Technology Co ltd
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Guizhou Hengyi Tongtong Traffic Technology Co ltd
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Abstract

The utility model discloses a signal control cabinet for building engineering construction, which comprises a cabinet body, wherein one end of the opening side of the cabinet body in the vertical direction is rotationally connected with a cabinet door, one side of the cabinet door close to the rotational connection position is vertically welded with a rotating shaft, two sliding columns are all sleeved and slidably connected with sliding sleeves close to one end of the cabinet door, two middle positions of the upper parts of the sliding sleeves are vertically welded with a same mounting plate, a transmission assembly for enabling the sliding sleeves to slide along the sliding columns is arranged between the rotating shaft and one of the sliding sleeves, a limiting assembly for limiting the sliding sleeves to slide on the sliding columns is arranged between one sliding sleeve and a door locking assembly without teeth, the utility model is different from the traditional electric power signal control cabinet, a worker needs to stretch hands and stretch heads to enter the cabinet body for maintenance, the device is more humanized, the safety is improved, and the stability of the mounting plate in the cabinet body is ensured, preventing it from moving back and forth and damaging the power equipment.

Description

Signal control cabinet for constructional engineering construction
Technical Field
The utility model relates to a construction tool technical field especially relates to a signal control cabinet for building engineering construction.
Background
At present, in most building construction sites, large-scale mechanical equipment such as tower cranes, mixers, transport elevators and the like are frequently needed, because the quantity is large, and an electric power system is complex, an electric power signal control cabinet needs to be arranged in a construction site, the control cabinet is formed by assembling switch equipment, measuring instruments, protective electric appliances and auxiliary equipment in a closed or semi-closed metal cabinet or on a screen according to the electric wiring requirement, the arrangement of the control cabinet meets the requirement of normal operation of an electric power system, the control cabinet is convenient to overhaul, prompts or sends signals deviating from the normal working state, and the control cabinet is commonly used in various power distribution, distribution and transformation substations.
However, in all the conventional signal control cabinets, all the contact wires, the switches, the relay fuses and the like are fixedly installed inside the cabinet body, and during maintenance work, maintenance personnel often need to drill into the half body to perform maintenance and the like, and the positions are narrow, so that the maintenance is inconvenient, and certain safety problems exist, and therefore, a signal control cabinet for construction engineering is proposed.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the shortcoming that exists among the prior art, and the signal control cabinet who provides for building engineering construction.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a signal control cabinet for constructional engineering construction comprises a cabinet body, wherein one side of the cabinet body is of an open structure, and one end of the cabinet body at the opening side in the vertical direction is rotatably connected with a cabinet door, one side of the cabinet door close to the rotary connection position is vertically welded with a rotating shaft, two ends of the rotating shaft are rotatably connected with the inner walls of two sides of the cabinet body, two ends of the lower part of one side of the cabinet body, which is far away from the cabinet door, are horizontally welded with sliding columns, one ends of the two sliding columns, which are close to the cabinet door, are sleeved and are connected with sliding sleeves in a sliding manner, the middle positions of the upper parts of the two sliding sleeves are vertically welded with a same mounting plate, and one end of the mounting plate, which is far away from the sliding sleeve, is horizontally welded with a rain baffle which is connected with the top surface in the cabinet body in a sliding way, a transmission component which enables the sliding sleeve to slide along the sliding column is arranged between the rotating shaft and one of the sliding sleeves, a door locking component is arranged on the cabinet door, and a limiting component for limiting the sliding sleeve to slide on the sliding column is arranged between the sliding sleeve without the teeth and the door locking component.
Preferably, the two ends of the upper part of the rain baffle are far away from one side of the cabinet door and are vertically welded with bolts, the two ends of the top surface of the inner part of the cabinet body are far away from one side of the cabinet door and are respectively provided with a sliding groove, and the two bolts are respectively connected in the two sliding grooves in a sliding manner.
Preferably, the transmission assembly includes that the pivot lower extreme passes the first gear of cabinet body bottom outer wall key-type connection, the internal bottom surface of cabinet is close to pivot position department and inserts perpendicularly and establish and rotate and be connected with the gear post, and gear post lower extreme passes cabinet body bottom surface outer wall and first gear engagement, the internal bottom surface of cabinet is close to gear post position department and rotates perpendicularly and be connected with the second gear, and one of them is close to the second gear the sliding sleeve is close to second gear one side and has opened tooth along its length direction, and second gear and tooth meshing.
Preferably, the door locking assembly comprises a cabinet door, one side of the cabinet body is far away from the connecting shaft connected with the cabinet door in a rotating mode, the middle position of the rotating shaft is far away from the middle position of the rotating shaft, one side of the connecting shaft is horizontally welded with a handle, the connecting shaft is far away from one end of the handle, the cabinet door is close to one side of the cabinet body and is connected with a cam in a key mode, the upper portion of the cam is vertically welded with a locking block, the inner wall of the cabinet body, which is far away from one side of the rotating shaft, is close to the middle position of the cabinet door and is opened with a semicircular groove, and the locking block is matched with the semicircular groove.
Preferably, the four corners of the outer wall of the bottom surface of the cabinet body are vertically provided with pillars, and one of the pillars is close to the first gear, and the upper part of the pillar is rotatably connected with the bottom of the first gear.
Preferably, the limiting assembly comprises a fixing column which is vertically welded at one side of the cabinet door close to the cabinet body and is located at the lower part of the cam, one end of the fixing column close to the cam is vertically inserted and provided with an L-shaped connecting rod in a sliding connection mode, the L-shaped connecting rod is close to one end of the cam and coaxially sleeved with a limiting disc, a spring is sleeved between the limiting disc and the fixing column, one end of the cabinet door is vertically welded to the bottom surface of the L-shaped connecting rod, an inserting rod is arranged at one end of the L-shaped connecting rod, teeth are not arranged on one end of the sliding sleeve, close to the cabinet door, is vertically provided with a jack, and the inserting rod is matched with the jack.
The utility model has the advantages that:
1. through at electric wire equipment mounting panel bottom welded sliding sleeve, again with sliding sleeve sliding connection on the traveller, the pivot of deuterogamy cabinet door one side and the transmission assembly between the sliding sleeve, when making electric power staff open the cabinet door, can drive even the internal portion of a sliding sleeve roll-off cabinet through gear tooth linkage effect, thereby it is internal to realize that whole mounting panel slips out the cabinet, electric power staff has made things convenient for the electric power staff to overhaul the inspection, be different from traditional power signal switch board, the staff need stretch out the hand and stretch into the internal maintenance of cabinet, this device is more humanized, and improve the security.
2. Through the jack of seting up on one of them sliding sleeve to and the inserted bar that the inboard lower extreme of cabinet door slided and resets and set up, cooperate again and lock the cam extrusion effect between the door subassembly, realized driving behind the locking cabinet door in the inserted bar inserts the jack on one of them sliding sleeve, guaranteed the stability of mounting panel in cabinet body inside, prevent that its back-and-forth movement from damaging power equipment.
Drawings
Fig. 1 is a schematic perspective view of a signal control cabinet for construction engineering according to the present invention;
fig. 2 is a schematic view of a three-dimensional structure of a removal cabinet door of a signal control cabinet for building engineering construction provided by the utility model;
fig. 3 is a schematic view of a three-dimensional structure of a mounting plate of a signal control cabinet for constructional engineering construction according to the present invention;
fig. 4 is a schematic view of a planar structure of a cabinet door of the signal control cabinet for building engineering construction according to the present invention;
fig. 5 is the utility model provides an inboard spatial structure schematic diagram of cabinet door for signal control cabinet of building engineering construction.
In the figure: the intelligent cabinet comprises a cabinet body 1, a cabinet door 2, a handle 3, a connecting shaft 4, a first gear 5, a gear column 6, a second gear 7, a sliding column 8, a sliding sleeve 9, a jack 10, a rotating shaft 11, a mounting plate 12, a rain baffle 13, a bolt 14, a semicircular groove 15, a cam 16, a locking block 17, a limiting disc 18, a spring 19, a fixed column 20, a connecting rod 21L, an inserted rod 22 and a supporting column 23.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-5, a signal control cabinet for construction of building engineering, comprising a cabinet body 1, one side of the cabinet body 1 is an open structure, one end of the open side of the cabinet body 1 in the vertical direction is rotatably connected with a cabinet door 2, one side of the cabinet door 2 near the rotary connection position is vertically welded with a rotating shaft 11, and two ends of the rotating shaft 11 are rotatably connected with the inner walls of two sides of the cabinet body 1, two ends of the lower part of the cabinet body 1 far away from the cabinet door 2 are horizontally welded with sliding columns 8, one end of each sliding column 8 near the cabinet door 2 is sleeved and slidably connected with a sliding sleeve 9, the middle position of the upper parts of the two sliding sleeves 9 is vertically welded with a same mounting plate 12, one end of the mounting plate 12 far away from the sliding sleeve 9 is horizontally welded with a rain baffle 13, the rain baffle 13 is slidably connected with the top surface inside the cabinet body 1, a transmission assembly for sliding the sliding sleeve 9 along the sliding column 8 is arranged between the rotating shaft 11 and one sliding sleeve 9, a door locking assembly is arranged on the cabinet door 2, a limiting component for limiting the sliding sleeve 9 to slide on the sliding column 8 is arranged between one sliding sleeve 9 without teeth and the door locking component.
In the utility model, bolts 14 are vertically welded at two ends of the upper part of a rain baffle 13 far away from one side of a cabinet door 2, chutes are opened at two ends of the top surface of the inner part of a cabinet body 1 far away from one side of the cabinet door 2, and the two bolts 14 are respectively connected in the two chutes in a sliding way, a transmission component comprises a first gear 5 with the lower end of a rotating shaft 11 passing through the outer wall key connection of the bottom of the cabinet body 1, a gear post 6 is vertically inserted and rotationally connected at the position of the bottom surface of the inner part of the cabinet body 1 near the rotating shaft 11, the lower end of the gear post 6 passes through the outer wall of the bottom surface of the cabinet body 1 to be meshed with the first gear 5, a second gear 7 is vertically rotationally connected at the position of the bottom surface of the inner part of the cabinet body 1 near the gear post 6, teeth are arranged at one side of a sliding sleeve 9 near the second gear 7 along the length direction, and the second gear 7 is meshed with the teeth, a door connecting shaft assembly comprises a cabinet door 4 rotationally connected at the middle position of one side of the cabinet door 2 far away from one side of the rotating shaft 11, a handle 3 is horizontally welded on one side of a connecting shaft 4, one end of the connecting shaft 4, far away from the handle 3, penetrates through a cabinet door 2 and is connected with a cam 16 in a key mode, the upper portion of the cam 16 is vertically welded with a locking block 17, a semicircular groove 15 is formed in the position, near the middle of one end of the cabinet door 2, of the inner wall of the cabinet body 1, far away from a rotating shaft 11, the locking block 17 is matched with the semicircular groove 15, pillars 23 are vertically arranged at four corners of the outer wall of the bottom surface of the cabinet body 1, the upper portion of one of the pillars 23, near the first gear 5, is rotatably connected with the bottom of the first gear 5, a limiting assembly comprises a fixed column 20 which is vertically welded at the position, near the lower portion of the cam 16, of the cabinet door 2, near one end of the cabinet body 1, an L-shaped connecting rod 21 is vertically inserted and slidably connected with one end of the cam 16, a limiting disc 18 is coaxially sleeved and fixed at one end of the L-shaped connecting rod 21, and a spring 19 is sleeved between the limiting disc 18 and the fixed column 20, an inserting rod 22 is vertically welded at one end, far away from the cabinet door 2, of the bottom surface of the L-shaped connecting rod 21, an inserting hole 10 is vertically formed at one end, close to the cabinet door 2, of the upper portion of one sliding sleeve 9 without teeth, and the inserting rod 22 is matched with the inserting hole 10.
The working principle is as follows: when the device is used, if a power signal system fault occurs or the signal cabinet needs to be checked and overhauled for a long time without checking, at the moment, only the handle 3 needs to be held by hand and rotated to drive the locking block 17 to rotate and be separated from the semicircular groove 15, the cabinet door 2 is pulled open, so that the rotating shaft 11 on one side of the cabinet door 2 rotates to drive the first gear 5 on the lower end to rotate, the second gear 7 is driven to rotate through the transmission of the gear column 6, the second gear 7 is meshed with the teeth on one side of one sliding sleeve 9, so that the sliding sleeve 9 is driven to move along the sliding column 8, as the opening degree of the cabinet door 2 is increased, the two sliding sleeves 9 drive the mounting plate 12 to slowly slide out of the cabinet body 1, at the moment, power signal equipment arranged on the mounting plate 12 is completely removed from the cabinet body 1, the convenience is brought for the overhaul of the overhaul personnel, the safety and the convenience are improved when the traditional overhaul personnel need to half-body to drill into the cabinet body 1 for operation, after the overhaul is accomplished, close cabinet door 2, drive 12 return of decorating up, rotate handle 3 and make locking piece 17 lock into the chucking in half slot 15 once more, drive cam 16 rotatory, extrusion L shape connecting rod 21 moves down for in inserted bar 22 shifts down and inserts jack 10, restrict sliding sleeve 9 and slide along traveller 8 in the cabinet body 1 wantonly, damage power equipment.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A signal control cabinet for building engineering construction comprises a cabinet body (1) and is characterized in that one side of the cabinet body (1) is of an open structure, one end of one side of the open side of the cabinet body (1) in the vertical direction is rotatably connected with a cabinet door (2), one side of the cabinet door (2) close to a rotary connecting position is vertically welded with a rotary shaft (11), two ends of the rotary shaft (11) are rotatably connected with inner walls on two sides of the cabinet body (1), two ends of the lower part of one side of the cabinet body (1) far away from the cabinet door (2) are horizontally welded with sliding columns (8), one end of each sliding column (8) close to the cabinet door (2) is sleeved with and slidably connected with a sliding sleeve (9), the middle position of the upper part of each sliding sleeve (9) is vertically welded with a same mounting plate (12), one end of the mounting plate (12) far away from the sliding sleeve (9) is horizontally welded with a rain baffle plate (13), and the rain baffle (13) is slidably connected with the top surface in the cabinet body (1), a transmission assembly enabling the sliding sleeve (9) to slide along the sliding column (8) is arranged between the rotating shaft (11) and one of the sliding sleeves (9), a door locking assembly is arranged on the cabinet door (2), and a limiting assembly limiting the sliding sleeve (9) to slide on the sliding column (8) is arranged between one of the sliding sleeves (9) and the door locking assembly, wherein teeth are not formed in one of the sliding sleeves (9).
2. The signal control cabinet for building engineering construction according to claim 1, wherein the side of the two ends of the upper part of the rain baffle (13) away from the cabinet door (2) is vertically welded with a bolt (14), the side of the two ends of the top surface of the inner part of the cabinet body (1) away from the cabinet door (2) is provided with a sliding groove, and the two bolts (14) are respectively connected in the two sliding grooves in a sliding manner.
3. The signal control cabinet for building engineering construction according to claim 1, wherein the transmission assembly comprises a first gear (5) with a lower end of a rotating shaft (11) penetrating through a key connection of an outer wall at the bottom of the cabinet body (1), a gear column (6) is vertically inserted and rotatably connected at a position close to the rotating shaft (11) on the inner bottom surface of the cabinet body (1), the lower end of the gear column (6) penetrates through an outer wall of the bottom surface of the cabinet body (1) to be meshed with the first gear (5), a second gear (7) is vertically rotatably connected at a position close to the gear column (6) on the inner bottom surface of the cabinet body (1), one side, close to the second gear (7), of the sliding sleeve (9) close to the second gear (7) is provided with teeth along the length direction, and the second gear (7) is meshed with the teeth.
4. The signal control cabinet for building engineering construction according to claim 1, characterized in that the door locking assembly comprises a connecting shaft (4) rotatably connected with one side of the cabinet door (2) far away from the middle position of one end of the rotating shaft (11) at one side of the cabinet body (1), a handle (3) is horizontally welded at one side of the connecting shaft (4), one end of the connecting shaft (4) far away from the handle (3) penetrates through the cabinet door (2) and is close to one side of the cabinet body (1) and connected with a cam (16), a locking block (17) is vertically welded at the upper part of the cam (16), a semicircular groove (15) is formed at the middle position of one end of the inner wall of the cabinet body (1) far away from the rotating shaft (11) and close to the cabinet door (2), and the locking block (17) is matched with the semicircular groove (15).
5. The signal control cabinet for the building engineering construction according to claim 1, characterized in that four corners of the outer wall of the bottom of the cabinet body (1) are vertically provided with pillars (23), and the upper part of one pillar (23) close to the first gear (5) is rotatably connected with the bottom of the first gear (5).
6. The signal control cabinet for the building engineering construction is characterized in that the limiting assembly comprises a fixing column (20) which is vertically welded at the position, close to the cabinet body (1), of one side of the cabinet door (2) and is positioned at the lower part of the cam (16), one end, close to the cam (16), of the fixing column (20) is vertically inserted and is connected with an L-shaped connecting rod (21) in a sliding mode, one end, close to the cam (16), of the L-shaped connecting rod (21) is coaxially sleeved and fixed with a limiting disc (18), a spring (19) is sleeved between the limiting disc (18) and the fixing column (20) on the L-shaped connecting rod (21), one end, far away from the cabinet door (2), of the bottom surface of the L-shaped connecting rod (21) is vertically welded with an inserting rod (22), one end, close to the cabinet door (2), of the upper part of the sliding sleeve (9) without teeth is vertically provided with inserting holes (10), and the inserted rod (22) is matched with the insertion hole (10).
CN202120750124.7U 2021-04-13 2021-04-13 Signal control cabinet for constructional engineering construction Active CN215010979U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120750124.7U CN215010979U (en) 2021-04-13 2021-04-13 Signal control cabinet for constructional engineering construction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120750124.7U CN215010979U (en) 2021-04-13 2021-04-13 Signal control cabinet for constructional engineering construction

Publications (1)

Publication Number Publication Date
CN215010979U true CN215010979U (en) 2021-12-03

Family

ID=79136746

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120750124.7U Active CN215010979U (en) 2021-04-13 2021-04-13 Signal control cabinet for constructional engineering construction

Country Status (1)

Country Link
CN (1) CN215010979U (en)

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