Split mounting type vault door
The design of the assembled vault door solves the problem of concrete pouring hindering the use of equipment, improves the normal use and safety of the equipment, meets the installation requirements of modern equipment, and monitors the status of the door through sensors, thereby improving the safety and flexibility of the vault door.
Patent Information
- Application Number
- CN202422818843.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-19
AI Technical Summary
When installing modern equipment, the existing vault doors hinder the use of equipment due to concrete pouring, resulting in insufficient safety and protection and failing to meet the use standards.
An assembled vault door is designed, which adopts a combined structure of pouring parts and lock body parts to form a wiring cavity and a pouring cavity, which are used for equipment wiring and pouring concrete respectively, ensuring the normal use and safety of the equipment, and monitoring the status of the door through sensors.
It improves the safety and protection of the vault door without hindering the use of equipment, meets the installation requirements of modern equipment, and monitors the status of the door in real time through sensors to enhance safety and flexibility.
Smart Images

Figure CN223358951U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an assembled safe door, belonging to the field of safes. Background Art
[0002] A bank business vault is a cash safe set up by grassroots institutions (bank branches) of Chinese banks to handle daily cash receipts and payments. It stores daily working capital, which is part of the currency in circulation. Bank business vaults are limited to branches, offices, and offices that conduct business with the outside world, and are subject to inventory limits. Existing vault doors are typically hinged to the vault body. Due to increasing demands, vault doors require a series of modern equipment, such as monitoring equipment and alarm equipment, in addition to the existing floor and ceiling locks. These devices require power supply cables for use, and the security requirements of vault doors require concrete pouring inside. Concrete greatly hinders the use and installation of modern equipment. Therefore, most manufacturers do not pour concrete inside vault doors to avoid hindering the use of various equipment. This leads to insufficient safety and protection, and does not meet the usage standards. Utility Model Content
[0003] The purpose of the utility model is to overcome the shortcomings and deficiencies of the prior art and to provide an assembled safe door.
[0004] A assembled safe door includes a door body assembly and a door frame assembly cooperating with the door body assembly, the door body assembly includes a pouring component and a lock body component connected to each other, the pouring component includes a first mounting plate and a second mounting plate, a wiring cavity for equipment wiring is formed between the first mounting plate and the second mounting plate, one side of the wiring cavity is connected to a rotating shaft for connection to the door frame assembly, the door frame assembly includes a fixing part cooperating with the rotating shaft to enable the door body assembly to rotate, the fixing part is hollow and is used for the equipment connection line to pass through the rotating shaft and then exit through the fixing part.
[0005] Preferably, mounting boxes connected to the wiring cavity are fixed at the upper and lower ends of the second mounting plate, a first rotating shaft is fixed to the bottom of the mounting box at the upper end, and a second rotating shaft is fixed to the top of the mounting box at the lower end, and bearings for rotationally connecting to the fixed part are installed on the first rotating shaft and the second rotating shaft.
[0006] Furthermore, the first rotating shaft is provided with an axial hole connected to the installation box, and the axial hole is used for the device connection line to pass through and enter the fixed part to exit.
[0007] Preferably, the door frame assembly includes a frame, the fixing portion is installed on one side of the frame, a wire groove is provided in the fixing portion, a wire outlet hole communicating with the outside is provided in the wire groove, and a plurality of through holes are evenly distributed around the frame.
[0008] Furthermore, a wire clamping plate is fixed in the wire trough, and the wire clamping plate is provided with wiring holes for equipment wiring.
[0009] Furthermore, the lock body component includes a splicing plate and a third mounting plate, and a locking cavity for accommodating the sky and earth lock is formed between the splicing plate and the third mounting plate. The splicing plate is evenly distributed along the four sides with a number of hollow fixing columns, and the second mounting plate is provided with a fixing hole for embedding with the end of the fixing column. The lock body component is spliced and fixed to the pouring component through the bolt connection between the fixing column on the splicing plate and the fixing hole on the second mounting plate, and a pouring cavity for pouring concrete is formed between the splicing plate and the second mounting plate.
[0010] Furthermore, a reinforcement plate is provided on the second mounting plate, and the reinforcement plate is arranged on the fixing hole in a horizontal direction and a vertical direction respectively. The second mounting plate is connected to the fixing hole and the splicing plate by bolts passing through the reinforcement plate.
[0011] Furthermore, the splicing plate is provided with several positioning columns, and the second mounting plate is provided with positioning holes for fitting with the ends of the positioning columns. The splicing plate positions and docks the lock body component with the infusion component through the cooperation between the positioning columns and the positioning holes.
[0012] Preferably, the first mounting plate is provided with an unlocking portion used to unlock the top and bottom locks to open the safe door, the splicing plate is provided with a hollow connecting column, the second mounting plate is provided with a connecting hole for embedding and cooperating with the end of the connecting column, and the top and bottom locks are connected to the unlocking portion on the first mounting plate through the connecting column via a connecting shaft.
[0013] Furthermore, a first sensor and a second sensor are provided in the top and bottom lock. The first sensor is used to sense whether the safe door is in a closed state; the second sensor is used to sense whether the top and bottom lock is in a locked state after the safe door is closed.
[0014] The beneficial effects of the present invention are as follows: by setting up isolation doors and warehouse doors, the security of the business warehouse can be enhanced. When in use, it is necessary to open the first isolation door first and then open the second warehouse door to take out cash, which greatly improves safety and protection. External components can also be set on the isolation door to enhance protection and safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, without paying creative labor, other drawings obtained based on these drawings still fall within the scope of the present invention.
[0016] Figure 1 This is a schematic diagram of the main structure of the utility model;
[0017] Figure 2 This is a structural diagram of the door frame assembly in the present invention;
[0018] Figure 3 This is a schematic diagram of the structure of the utility model from a rear-view angle;
[0019] Figure 4 This is a schematic diagram of the partial cross-sectional structure of the top of the utility model;
[0020] Figure 5 This is a structural diagram of the utility model with the third mounting plate removed from the rear view angle;
[0021] Figure 6 This is a structural diagram of the utility model without the first mounting plate and other parts;
[0022] Figure 7 for Figure 6 Schematic diagram of the structure with the reinforcement plate removed;
[0023] Figure 8 for Figure 7 A structural diagram in which the second mounting plate is removed;
[0024] Figure 9 It is a schematic diagram of the cross-sectional structure of the utility model;
[0025] Figure 10 Structural diagram of door frame assembly with the department structure removed;
[0026] In the figure, 1. Door assembly; 2. Infusion component; 21. First mounting plate; 211. Unlocking part; 22. Second mounting plate; 221. Fixing hole; 222. Reinforcement plate; 223. Positioning hole; 224. Connecting hole; 23. Mounting box; 24. Rotating shaft; 241. First rotating shaft; 242. Shaft hole; 243. Second rotating shaft; 244. Bearing; 25. Wiring cavity; 3. Lock body component; 31. Splicing plate ; 311, fixing column; 312, perfusion cavity; 313, positioning column; 314, connecting column; 32, third mounting plate; 321, locking cavity; 33, sky and earth lock; 331, connecting shaft; 332, first sensor; 333, second sensor; 4, door frame assembly; 41, frame; 411, through hole; 42, fixing part; 421, wire trough; 422, wire outlet hole; 423, wire clamping plate; 424, wiring hole. DETAILED DESCRIPTION
[0027] In order to make the purpose, technical solutions and advantages of the present invention more clear, the present invention will be described in further detail below with reference to the accompanying drawings.
[0028] It should be noted that all expressions using "first" and "second" in the embodiments of the present invention are for the purpose of distinguishing two non-identical entities or non-identical parameters with the same name. It can be seen that "first" and "second" are only for the convenience of expression and should not be understood as limitations on the embodiments of the present invention. Subsequent embodiments will not explain this one by one.
[0029] The directional and positional terms used in this invention, such as "upper," "lower," "front," "back," "left," "right," "inner," "outer," "top," "bottom," and "side," are used solely to refer to the directions or positions in the accompanying drawings. Therefore, the directional and positional terms used are intended to illustrate and facilitate understanding of this invention and are not intended to limit the scope of protection of this invention.
[0030] like Figure 1-10 As shown, an embodiment of the utility model is an assembled safe door, including a door body assembly 1 and a door frame assembly 4 cooperating with the door body assembly 1, the door body assembly 1 includes a perfusion component 2 and a lock body component 3 connected to each other, the perfusion component 2 includes a first mounting plate 21 and a second mounting plate 22, a wiring cavity 25 for equipment wiring is formed between the first mounting plate 21 and the second mounting plate 22, one side of the wiring cavity 25 is connected to a rotating shaft 24 for connecting to the door frame assembly 4, the door frame assembly 4 includes a fixing portion 42 cooperating with the rotating shaft 24 to enable the door body assembly 1 to rotate, the fixing portion 42 is hollow and is used for the equipment connection line to pass through the rotating shaft 24 and then exit through the fixing portion 42. By providing a splicable pouring component 2 and a lock body component 3, the internal equipment that needs to be routed can be routed separately through the routing cavity 25 formed between the first mounting plate 21 and the second mounting plate 22, and a cavity for pouring concrete can be formed between the pouring component 2 and the lock body component 3, which will not hinder the normal use of the equipment and meet the safety protection standards, with good use effect and high protection level.
[0031] Mounting boxes 23, which communicate with the wiring cavity 25, are fixed to the upper and lower ends of the second mounting plate 22. A first rotating shaft 241 is fixed to the bottom of the upper mounting box 23, and a second rotating shaft 243 is fixed to the top of the lower mounting box 23. Bearings 244 are mounted on the first and second rotating shafts 241, 243 for rotational connection with the fixed portion 42. The door body assembly 1 is connected to the door frame assembly 4 via the first and second rotating shafts 241, 243 on the mounting box 23, facilitating the opening and closing of the safe door.
[0032] The first rotating shaft 241 is provided with an axial hole 242 that communicates with the mounting box 23. The axial hole 242 is used for the device connection cable to pass through and exit from the fixed portion 42. The device connection cable enters the mounting box 23 through the wiring cavity 25, then enters the fixed portion 42 through the axial hole 242 of the first rotating shaft 241, and is electrically connected to the external device.
[0033] The door frame assembly 4 includes a frame 41, with a fixing portion 42 mounted on one side of the frame 41. A wire trough 421 is provided within the fixing portion 42, which includes wire outlet holes 422 for communication with the outside. Several through-holes 411 are evenly distributed around the frame 41. Electrical wires from devices enter the wire trough 421 in the fixing portion 42, exit through the wire outlet holes 422, and are then electrically connected to devices at various locations through the through-holes 411 in the frame 41, facilitating ease of use and installation, and enhancing flexibility and convenience.
[0034] A cable clamp 423 is fixed in the cable trough 421, and a cable hole 424 is provided on the cable clamp 423 for routing equipment cables. The cable hole 424 can limit the position of the equipment connection cable, preventing it from being scattered in the cable trough 421 and affecting the normal opening and closing of the vault door, thereby improving the use effect and product quality.
[0035] The lock body component 3 includes a splicing plate 31 and a third mounting plate 32, and a locking cavity 321 for accommodating the sky and earth lock 33 is formed between the splicing plate 31 and the third mounting plate 32. The splicing plate 31 is evenly distributed along the four sides with several hollow fixing columns 311. The second mounting plate 22 is provided with a fixing hole 221 for embedding with the end of the fixing column 311. The lock body component 3 is spliced and fixed to the pouring component 2 through the bolt connection of the fixing column 311 on the splicing plate 31 and the fixing hole 221 on the second mounting plate 22. A pouring cavity 312 for pouring concrete is formed between the splicing plate 31 and the second mounting plate 22. On the basis of setting up the wiring cavity 25 for separate wiring, the pouring cavity 312 formed between the splicing plate 31 and the second mounting plate 22 can be used for pouring concrete. This setting allows the equipment wiring and the pouring of concrete to be separated, and the two do not affect each other, which is beneficial to improving the safety of the vault door and also facilitates the wiring of various equipment. In addition, through the embedded docking cooperation of the fixing column 311 and the fixing hole 221, the lock body component 3 can be quickly installed on the pouring component 2, and further reinforced by pouring concrete, thereby enhancing the safety and protection of the vault door.
[0036] The second mounting plate 22 is provided with reinforcement plates 222, which are arranged horizontally and longitudinally on the fixing holes 221. The second mounting plate 22 is connected to the splicing plate 31 by bolts passing through the reinforcement plates 222 and the fixing holes 221. The reinforcement plates 222 further strengthen the butt joint between the splicing plate 31 and the second mounting plate 22, improving installation stability and preventing deformation of the second mounting plate 22.
[0037] The splicing plate 31 is also provided with a number of positioning posts 313. The second mounting plate 22 is provided with positioning holes 223 for engaging with the ends of the positioning posts 313. The splicing plate 31 facilitates the positioning and docking of the lock body component 3 and the injection component 2 through the engagement of the positioning posts 313 with the positioning holes 223. The engagement of the positioning posts 313 with the positioning holes 223, in addition to the engagement of the fixing posts 311 with the fixing holes 221, further enhances the positioning accuracy of the docking of the injection component 2 and the lock body component 3, further improving the efficiency of installation and removal.
[0038] The first mounting plate 21 is provided with an unlocking portion 211 for unlocking the lock 33 to open the vault door. A hollow connecting post 314 is provided on the splicing plate 31. The second mounting plate 22 is provided with a connecting hole 224 for engaging with the end of the connecting post 314. The lock 33 is connected to the unlocking portion 211 on the first mounting plate 21 via a connecting shaft 331 that passes through the connecting post 314. The connecting post 314 and the connecting hole 224 enable the unlocking portion 211, mounted on the first mounting plate 21, to unlock the lock 33 via the connecting shaft 331, without being affected by the concrete pouring, ensuring normal use of the product.
[0039] The lock 33 is equipped with a first sensor 332 and a second sensor 333. The first sensor 332 senses whether the vault door is closed, while the second sensor 333 senses whether the lock 33 is locked after the vault door is closed. The first and second sensors 332 and 333 monitor the vault door's status in real time and issue an alarm if the vault door is abnormal.
[0040] The above disclosure is only a preferred embodiment of the present invention, and certainly cannot be used to limit the scope of rights of the present invention. Therefore, equivalent changes made according to the claims of the present invention are still within the scope covered by the present invention.
[0041] Although the present invention has been described with reference to several specific embodiments, it should be understood that the present invention is not limited to the specific embodiments disclosed, and the present invention is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
Claims
1. An assembled safe door, characterized by: It includes a door body assembly and a door frame assembly cooperating with the door body assembly, the door body assembly includes a perfusion component and a lock body component that are docked together, the perfusion component includes a first mounting plate and a second mounting plate, a wiring cavity for equipment wiring is formed between the first mounting plate and the second mounting plate, one side of the wiring cavity is connected to a rotating shaft for connecting to the door frame assembly, the door frame assembly includes a fixing part that cooperates with the rotating shaft to enable the door body assembly to rotate, the fixing part is hollow and is used for the equipment connection line to pass through the rotating shaft and then exit through the fixing part.
2. The assembled safe door according to claim 1, characterized in that: The second mounting plate is fixed with mounting boxes connected to the wiring cavity at the upper and lower ends, a first rotating shaft is fixed to the bottom of the mounting box at the upper end, and a second rotating shaft is fixed to the top of the mounting box at the lower end, and bearings for rotationally connecting to the fixed part are installed on the first rotating shaft and the second rotating shaft.
3. The assembled safe door according to claim 2, characterized in that: The first rotating shaft is provided with an axial hole connected to the installation box, and the axial hole is used for the device connection line to pass through and enter the fixing part for exiting.
4. The assembled safe door according to claim 1, characterized in that: The door frame assembly includes a frame, the fixing portion is installed on one side of the frame, a wire groove is provided in the fixing portion, a wire outlet hole communicating with the outside is provided in the wire groove, and a plurality of through holes are evenly distributed around the frame.
5. The assembled safe door according to claim 4, characterized in that: A wire clamping plate is fixed in the wire trough, and the wire clamping plate is provided with wiring holes for equipment wiring.
6. The assembled safe door according to claim 1, characterized in that: The lock body component includes a splicing plate and a third mounting plate, and a locking cavity for accommodating the sky and earth lock is formed between the splicing plate and the third mounting plate. The splicing plate is evenly distributed with a number of hollow fixing columns along the four sides, and the second mounting plate is provided with a fixing hole for embedding with the end of the fixing column. The lock body component is spliced and fixed to the pouring component by bolting the fixing column on the splicing plate and the fixing hole on the second mounting plate. A pouring cavity for pouring concrete is formed between the splicing plate and the second mounting plate.
7. The assembled safe door according to claim 6, characterized in that: The second mounting plate is provided with a reinforcement plate, which is respectively arranged on the fixing holes in a transverse and longitudinal direction. The second mounting plate is connected to the splicing plate through bolts passing through the reinforcement plate, the fixing holes and the splicing plate.
8. The assembled safe door according to claim 6, characterized in that: The splicing plate is also provided with a plurality of positioning columns, and the second mounting plate is provided with positioning holes for fitting with the ends of the positioning columns. The splicing plate positions and docks the lock body component with the infusion component through the cooperation between the positioning columns and the positioning holes.
9. The assembled safe door according to claim 6, characterized in that: The first mounting plate is provided with an unlocking portion for unlocking the top and bottom locks to open the safe door, the splicing plate is provided with a hollow connecting column, the second mounting plate is provided with a connecting hole for embedding and cooperating with the end of the connecting column, and the top and bottom locks are connected to the unlocking portion on the first mounting plate through a connecting shaft passing through the connecting column.
10. The assembled safe door according to claim 6 or 7, characterized in that: The top and bottom locks are provided with a first sensor and a second sensor. The first sensor is used to sense whether the safe door is in a closed state; the second sensor is used to sense whether the top and bottom locks are in a locked state after the safe door is closed.