Reversible access control structure assembly and cabinet
By designing a flip-flopable access control structure assembly, the plug-in between the positioning components and the storage positioning hole or the deployed positioning hole is solved, the problem of damage to the access control equipment in a narrow space is solved, the storage protection of the access control body is realized, and the operation efficiency is improved.
Patent Information
- Application Number
- CN202422246612.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-13
AI Technical Summary
In the prior art, when the access control equipment of the cabinet moves and assembles in a narrow space, it is difficult to effectively avoid damage to the access control and affect the working efficiency.
A reversible access control structure assembly is designed, including an access control body, an installation bracket and a positioning assembly. Through the plugging of the positioning assembly with the storage positioning hole or the deployed positioning hole, the access control body is stored and deployed, and avoid occupying external space.
Without disassembling the access control body, the access control body is stored and protected, avoiding bumps, reducing disassembly and installation operations, and improving the operating efficiency of moving and assembling the cabinet.
Smart Images

Figure CN223067347U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cabinets, and particularly relates to a flip-up access control structure assembly and a cabinet. Background Art
[0002] A cabinet contains various functional modules and can implement functions such as data processing, storage, and power distribution according to different requirements. In the case where data is increasingly becoming an important resource, the application of cabinets is also becoming more and more extensive.
[0003] The cabinet has a front cabinet door. Opening the front cabinet door can operate or read data from the functional modules inside the cabinet. In order to improve the security of use, it is necessary to improve the security level of opening the front cabinet door. Thus, it is necessary to set up an access control device on the cabinet to open the front cabinet door through security functions such as fingerprints and passwords of the access control. Due to the compact design of the cabinet itself, the front cabinet door basically covers the front side of the cabinet. The access control device is often set on the side of the cabinet, occupying the external space of the cabinet. In situations where the cabinet needs to be moved or assembled in a narrow space and the access control function is not required, in order to avoid damage to the access control, it is often necessary to separate the access control from the cabinet and then install the access control on the cabinet after the operation is completed (or not install the access control anymore), resulting in difficulty in further improving the operation efficiency of moving the cabinet and other operations. Summary of the Utility Model
[0004] An embodiment of the utility model provides a flip-up access control structure assembly and a cabinet, aiming to solve the problem that the connection between the existing access control and the cabinet affects operations such as moving the cabinet.
[0005] To achieve the above object, the technical solution adopted by the utility model is as follows:
[0006] In a first aspect, an embodiment of the utility model provides a flip-up access control structure assembly, including:
[0007] An access control main body;
[0008] An installation bracket, fixed to the back side of the access control main body and rotatably connected to the cabinet main body. A storage positioning hole and an unfolding positioning hole are formed at the edge of the installation bracket, and the opening directions of the storage positioning hole and the unfolding positioning hole are both parallel to the rotation axis of the installation bracket; and
[0009] A positioning component, fixed to the cabinet main body and having a positioning end that can move in a direction parallel to the rotation axis. The positioning end can be inserted into the storage positioning hole or the unfolding positioning hole;
[0010] The positioning end cooperates with the storage positioning hole to limit the installation bracket in a storage state where it is attached to the side wall of the cabinet main body;
[0011] The positioning end cooperates with the unfolding positioning hole to limit the mounting bracket in an unfolded state at an angle to the side wall of the cabinet body.
[0012] Combined with the first aspect, in a possible implementation manner, the positioning assembly includes:
[0013] A positioning bracket fixed to the cabinet body; and
[0014] An elastic telescopic pin disposed on the positioning bracket and forming the positioning end, and the elastic telescopic pin is configured with a pre-tightening force to make the positioning end close to the mounting bracket.
[0015] Combined with the first aspect, in a possible implementation manner, the mounting bracket includes:
[0016] An access control mounting plate that is adhesively connected to the back of the access control body. The access control mounting plate has two connecting flanges disposed opposite to each other. The two connecting flanges are distributed along the rotation axis, and at least one of the connecting flanges is provided with the receiving positioning hole and the unfolding positioning hole; and
[0017] A cover plate located on the back side of the access control mounting plate and adhesively connected to the connecting flange. A receiving space is formed at an interval between the cover plate and the access control mounting plate;
[0018] The flip-up access control structure assembly further includes a hinge assembly that is connected between the access control mounting plate and the cabinet body, and the hinge assembly forms the rotation axis.
[0019] In some embodiments, the access control mounting plate further has two limiting flanges disposed opposite to each other. The limiting flanges are adjacent to the connecting flanges, and the two limiting flanges can respectively contact and limit the opposite sides of the cover plate.
[0020] In some embodiments, both ends of the limiting flange respectively extend to the corresponding connecting flange, so that the receiving space forms a closed space.
[0021] In some embodiments, the hinge assembly includes:
[0022] A static hinge plate, which is a U-shaped plate member. The static hinge plate straddles both sides of the corresponding limiting flange, and one arm of the static hinge plate is adhesively connected to the cabinet body;
[0023] A moving hinge plate adhesively connected to the access control mounting plate; and
[0024] A hinge shaft respectively connected to the moving hinge plate and the other arm of the static hinge plate;
[0025] A first avoidance notch corresponding to the movable hinge plate and the static hinge plate is formed in the cover plate.
[0026] In some embodiments, a second avoidance notch is formed in another arm of the static hinge plate, and the movable hinge plate is placed in the second avoidance notch.
[0027] Compared with the prior art, the solution shown in the embodiments of the present application, in scenarios where cabinets and the like need to be placed and moved in a narrow space without using the access control function, the mounting bracket fits against the side wall of the cabinet body, and the mounting bracket is fixed in this state by the plug-in fit of the positioning component and the storage positioning hole. Finally, the access control main body is kept in a position fitting against the side wall of the cabinet body, minimizing the external space occupied by the access control main body and avoiding knocking against the access control main body; in the case where the access control function needs to be used, first, the positioning end of the positioning component is disengaged from the storage positioning hole, the access control main body is rotated, and the mounting bracket is turned outwards synchronously. After the flipping is in place, the mounting bracket is in an unfolded state. At this time, the mounting bracket is fixed in this state by the plug-in fit of the positioning component and the unfolded positioning hole, facilitating the use of the access control main body. Without disassembling the access control main body, the present application can achieve the storage and protection of the access control main body, ensure that operations such as moving the cabinet body will not knock against the access control main body, reduce the operations of disassembling and reinstalling the access control main body, and effectively improve the overall operation efficiency.
[0028] In a second aspect, an embodiment of the present invention further provides a cabinet, including a cabinet body and the above-mentioned flip-up access control structure assembly.
[0029] In combination with the second aspect, in a possible implementation manner, a wire passing hole is formed in the mounting bracket, a cabinet body wire passing hole corresponding to the wire passing hole of the bracket is formed in the side plate of the cabinet body, the connecting wire of the access control main body passes through the wire passing hole of the bracket and the cabinet body wire passing hole, and a counterweight is further connected to the connecting wire, and the counterweight is located inside the cabinet body.
[0030] In some embodiments, a sealing gasket is provided at the wire passing hole of the bracket and the cabinet body wire passing hole. When the mounting bracket is in a storage state, the sealing gasket can form a seal between the mounting bracket and the cabinet body.
[0031] Compared with the prior art, the solution shown in the embodiments of the present application, by adopting the above-mentioned flip-up access control structure assembly, can achieve the storage and protection of the access control main body without disassembling the access control main body, ensure that operations such as moving the cabinet body will not knock against the access control main body, reduce the operations of disassembling and reinstalling the access control main body, and effectively improve the overall operation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1The front perspective view of the cabinet provided by the embodiment of the present utility model;
[0033] Figure 2 The rear perspective Figure 1 ;
[0034] Figure 3 The rear perspective Figure 2 of the cabinet provided by the embodiment of the present utility model, in which the sealing gasket is not shown;
[0035] Figure 4 The rear perspective of the mounting bracket and the access control main body adopted by the embodiment of the present utility model Figure 1 ;
[0036] Figure 5 The exploded view of the mounting bracket and the access control main body adopted by the embodiment of the present utility model;
[0037] Figure 6 The rear perspective of the mounting bracket and the access control main body adopted by the embodiment of the present utility model Figure 2 ;
[0038] Figure 7 The perspective view of the positioning component adopted by the embodiment of the present utility model;
[0039] Explanation of reference numerals:
[0040] 1. Reversible access control structure assembly; 10. Access control main body; 20. Mounting bracket; 201. Storage positioning hole; 202. Deployment positioning hole; 203. Bracket wire passing hole; 210. Access control mounting plate; 220. Cover plate; 2201. First avoidance notch; 221. Clamping edge; 230. Connecting flanging; 240. Limiting flanging; 30. Positioning component; 301. Positioning end; 310. Positioning bracket; 311. First positioning plate; 312. Second positioning plate; 320. Elastic telescopic pin; 40. Hinge assembly; 410. Static hinge plate; 4101. Second avoidance notch; 420. Moving hinge plate; 430. Hinge shaft; 50. Sealing gasket; 2. Cabinet main body; 21. Cabinet body wire passing hole. Detailed implementation manners
[0041] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present utility model more clear and understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0042] In the claims, the description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, when using terms such as "first", "second" or "third", etc., they are for distinguishing different objects, rather than for describing a specific order.
[0043] In the claims, the description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, for orientation terms, when using terms such as "center", "horizontal", "longitudinal", "level", "vertical", "top", "bottom", "inner", "outer", "upper", "lower", "front", "rear", "left", "right", "clockwise", "counterclockwise", "high", "low", etc. to indicate the orientation or position relationship, it is based on the orientation and position relationship shown in the drawings, and it is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, so it cannot be understood as limiting the specific protection scope of the present utility model.
[0044] In the claims, the description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, when using the term "fixed connection" or "fixedly connected", it should be understood in a broad sense, that is, any connection method without displacement relationship and relative rotation relationship between the two, that is, including non-detachable fixed connection, detachable fixed connection, being integrally connected, and being fixedly connected through other devices or elements.
[0045] In the claims, the description and the above-mentioned drawings of the present utility model, when using terms such as "comprising", "having" and their variants, are intended to mean "including but not limited to".
[0046] In the claims, the description and the above-mentioned drawings of the present utility model, when using the term "fitting connection", its implementation methods include but are not limited to fitting welding, connecting through threaded connectors after fitting, etc., and are not uniquely defined here.
[0047] Please refer to Figures 1 to 3, the flip-type access control structure assembly 1 provided by the present utility model will now be described. The flip-type access control structure assembly 1 includes an access control main body 10, a mounting bracket 20, and a positioning assembly 30; the mounting bracket 20 is fixed to the back side of the access control main body 10 and is rotatably connected to the cabinet main body 2. A storage positioning hole 201 and an unfolding positioning hole 202 are formed at the edge of the mounting bracket 20, and the opening directions of the storage positioning hole 201 and the unfolding positioning hole 202 are both parallel to the rotation axis of the mounting bracket 20; the positioning assembly 30 is fixed to the cabinet main body 2 and has a positioning end 301 that can move in a direction parallel to the rotation axis, and the positioning end 301 can be inserted into the storage positioning hole 201 or the unfolding positioning hole 202. The positioning end 301 cooperates with the storage positioning hole 201 to limit the mounting bracket 20 in a storage state where it fits against the side wall of the cabinet main body 2; the positioning end 301 cooperates with the unfolding positioning hole 202 to limit the mounting bracket 20 in an unfolding state where it forms an angle with the side wall of the cabinet main body 2.
[0048] In this embodiment, the rotation axis can be arranged in the up-down direction, or can be arranged in directions such as the left-right direction or the front-back direction, and can be flexibly selected according to the specific use requirements of the access control. In combination with the specific structure and dimensions of the cabinet main body 2 in this embodiment, for more convenient use, the flip-type access control structure assembly 1 is exemplarily arranged on the side of the cabinet main body 2, and the rotation axis is parallel to the up-down direction. In the storage state, the access control main body 10 is attached to the side wall of the cabinet main body 2 backward, and in the unfolding state, the access control main body 10 is substantially perpendicular to the side wall of the cabinet main body 2, so that the front surface of the access control main body 10 (i.e., the operation surface provided with modules such as a touch screen, buttons, and fingerprint recognition) faces forward (i.e., faces the operator), facilitating the operation of the operator; correspondingly, the storage positioning hole 201 and the unfolding positioning hole 202 are located on the upper side or the lower side of the mounting bracket 20, and the opening direction is parallel to the up-down direction, and the positioning assembly 30 is arranged above or below the mounting bracket 20.
[0049] In this embodiment, one unfolding positioning hole 202 can be provided, so that there can be only one unfolding angle of the access control main body 10, such as Figures 1 to 3 shown; alternatively, multiple unfolding positioning holes 202 are provided, and different unfolding positioning holes 202 correspond to different unfolding angles, so that different unfolding states can be selected according to different use requirements. In the attached drawing embodiment, in the storage state, the angle between the mounting bracket 20 and the side wall of the cabinet main body 2 is 0°, and in the unfolding state, the angle between the mounting bracket 20 and the side wall of the cabinet main body 2 is 90°.
[0050] The flip-up access control structure assembly 1 provided in this embodiment, compared with the prior art, in scenarios where cabinets and the like need to be placed and moved in a narrow space without using the access control function, the mounting bracket 20 fits against the side wall of the cabinet body 2, and the mounting bracket 20 is fixed in this state through the insertion and cooperation of the positioning component 30 with the receiving positioning hole 201. Finally, the access control main body 10 is kept in a position fitting against the side wall of the cabinet body 2, minimizing the external space occupied by the access control main body 10 and avoiding bumping the access control main body 10; in the case where the access control function needs to be used, first, the positioning end 301 of the positioning component 30 is disengaged from the receiving positioning hole 201, the access control main body 10 is rotated, and the mounting bracket 20 is turned outwards synchronously. After the flipping is in place, the mounting bracket 20 is in an unfolded state. At this time, the mounting bracket 20 is fixed in this state through the insertion and cooperation of the positioning component 30 with the unfolded positioning hole 202, facilitating the use of the access control main body 10. In this embodiment, without disassembling the access control main body 10, the storage and protection of the access control main body 10 can be achieved, ensuring that operations such as moving the cabinet main body 2 will not bump into the access control main body 10, reducing the operations of disassembling and reinstalling the access control main body 10, and effectively improving the overall operation efficiency.
[0051] In some implementation manners capable of realizing the movement of the positioning end 301, not shown in the figure, the positioning component 30 includes a positioning bracket 310 and a positioning pin. The positioning pin is movably connected to the positioning bracket 310 along the rotation axis and forms the positioning end 301. When in use, directly pulling the positioning pin can disengage the positioning end 301 from the receiving positioning hole 201 or the unfolded positioning hole 202; by pushing the positioning pin, the positioning end 301 can be reinserted into the receiving positioning hole 201 or the unfolded positioning hole 202. In order to keep the positioning pin in a state where the positioning end 301 is disengaged from the receiving positioning hole 201 or the unfolded positioning hole 202, or keep the positioning pin in a state where the positioning end 301 is inserted into the receiving positioning hole 201 or the unfolded positioning hole 202, a positioning sliding hole is provided on the positioning bracket 310, and an elastic cushion layer is provided on the outer peripheral surface of the positioning pin. The elastic cushion layer is in close fit with the inner wall of the positioning sliding hole, and the positioning of the positioning pin is achieved through the damping effect.
[0052] In some other implementation manners capable of realizing the movement of the positioning end 301, refer to Figure 2 、 Figure 3 and Figure 7, the positioning component 30 includes a positioning bracket 310 and an elastic telescopic pin 320; the positioning bracket 310 is fixed to the cabinet body 2; the elastic telescopic pin 320 is arranged on the positioning bracket 310 and forms a positioning end 301, and the elastic telescopic pin 320 is configured with a pre-tightening force to make the positioning end 301 approach the mounting bracket 20. During use, directly pulling the elastic telescopic pin 320 can make the positioning end 301 disengage from the storage positioning hole 201 or the expansion positioning hole 202; releasing the elastic telescopic pin 320 can make the positioning end 301 re-insert into the storage positioning hole 201 or the expansion positioning hole 202 to achieve automatic reset, making it more convenient to use.
[0053] In some specific embodiments of the positioning bracket 310, refer to Figure 2 , Figure 3 and Figure 7 , the positioning bracket 310 includes a first positioning plate 311 and a second positioning plate 312 arranged at an angle. The first positioning plate 311 is attached to the side wall of the cabinet body 2, and the second positioning plate 312 is used to carry the elastic telescopic pin 320. Among them, in order to more conveniently insert the elastic telescopic pin 320 into the storage positioning hole 201 or the expansion positioning hole 202, the plate surface of the second positioning plate 312 is perpendicular to the rotation axis. Further, if the rotation axis is parallel to the side wall of the cabinet body 2, the first positioning plate 311 and the second positioning plate 312 are perpendicular to each other.
[0054] The specific structure of the elastic telescopic pin 320 includes but is not limited to the following several types:
[0055] 1) The elastic telescopic pin 320 includes a pin seat, a pin body and an elastic member. The pin seat is fixed to the positioning bracket 310 (specifically the second positioning plate 312) and forms a guide hole; the pin body is slidably inserted into the guide hole, and one end of the pin body extending out of the guide hole forms the positioning end 301; the elastic member is placed in the guide hole, and the elastic member is configured with a pre-tightening force to make the positioning end 301 away from the pin seat.
[0056] 2) On the basis of structure 1), in order to conveniently adjust the position of the positioning end 301, and then release the locking state of the elastic telescopic pin 320 on the mounting bracket 20, an adjusting member is arranged in the pin seat. The adjusting member is connected to the pin body and has an adjusting end penetrating the pin seat. By applying force to the adjusting end, the adjusting member drives the pin body to move away from the mounting bracket 20, so that the positioning end 301 disengages from the storage positioning hole 201 or the expansion positioning hole 202.
[0057] 3) The elastic expansion pin 320 slides through the positioning bracket 310 (specifically, the second positioning plate 312). An elastic element (such as a tension spring) is provided between the elastic expansion pin 320 and the positioning bracket 310. The elastic element is configured with a pre-tightening force that causes the positioning end 301 to move away from the pin base. At the same time, a positioning boss is provided on the elastic expansion pin 320, which can abut against the side of the positioning bracket 310 facing away from the mounting bracket 20 to prevent the elastic expansion pin 320 from disengaging from the positioning bracket 310 under the action of the elastic element.
[0058] In some embodiments, referring to Figures 2 to 6 , the mounting bracket 20 includes an access control mounting plate 210 and a cover plate 220; the access control mounting plate 210 is attached to the back surface of the access control main body 10. The access control mounting plate 210 has two connecting flanges 230 arranged opposite to each other. The two connecting flanges 230 are distributed along the rotation axis, and at least one of the connecting flanges 230 is provided with a receiving positioning hole 201 and an unfolding positioning hole 202; the cover plate 220 is located on the back side of the access control mounting plate 210 and is attached to the connecting flange 230. A receiving space is formed at an interval between the cover plate 220 and the access control mounting plate 210. The flip-up access control structure assembly 1 further includes a hinge assembly 40. The hinge assembly 40 is connected between the access control mounting plate 210 and the cabinet main body 2, and the hinge assembly 40 forms a rotation axis.
[0059] In this embodiment, the access control mounting plate 210 is connected to the access control main body 10 through fastening members such as threaded connectors. Subsequently, the cover plate 220 is covered on the back side of the access control mounting plate 210. The formed receiving space can accommodate the end of the fastening member, and it can also prevent the fastening member from being exposed due to the shielding of the cover plate 220. In the unfolded state, the back side of the mounting bracket 20 has a flat and beautiful appearance, and it can also prevent the problem that the fastening member is loosened due to being knocked.
[0060] During specific implementation, in order to facilitate the connection of the cover plate 220, the connecting flange 230 is an L-shaped flange, which can form a connecting fitting surface that fits with the cover plate 220, and then the connecting flange 230 and the cover plate 220 are connected through fastening members such as threaded connectors.
[0061] Based on the above embodiments, referring to Figures 2 to 6 , the access control mounting plate 210 also has two limiting flanges 240 arranged opposite to each other. The limiting flanges 240 are adjacent to the connecting flanges 230, and the two limiting flanges 240 can respectively contact and limit the opposite sides of the cover plate 220. A limiting space is formed between the two limiting flanges 240 to achieve limiting in the direction perpendicular to the rotation axis, which is convenient for the mounting holes on the cover plate 220 to be aligned with the mounting holes on the connecting flange 230.
[0062] In specific implementation, the limiting flanging 240 is an L-shaped flanging, which can form a support plate for shielding the side of the accommodating space and also has a relatively extending limiting plate. The limiting of the cover plate 220 is realized by the contact between the edge of the limiting plate and the edge of the cover plate 220. On this basis, a clamping edge 221 is provided on the side of the cover plate 220 away from the hinge assembly 40. The clamping edge 221 can be clamped on the side of the limiting plate facing the access control mounting plate 210. At the same time, at least one end edge of the clamping edge 221 abuts against the adjacent connecting flanging 230, thereby realizing the limiting in the direction parallel to the rotation axis and further improving the reliability of the pre-positioning of the cover plate 220; this embodiment exemplarily shows an embodiment in which both end edges of the clamping edge 221 abut against the adjacent connecting flanging 230 respectively.
[0063] In some more specific embodiments, refer to Figures 2 to 6 , both ends of the limiting flanging 240 respectively extend to the corresponding connecting flanging 230, so that the accommodating space forms a closed space, which can provide better protection for the internal components, avoid the internal fastening components from being knocked during the rotation of the mounting bracket 20, and further improve the reliability of use.
[0064] In some embodiments, refer to Figures 2 to 6 , the hinge assembly 40 includes a static hinge plate 410, a moving hinge plate 420 and a hinge shaft 430; the static hinge plate 410 is a U-shaped plate member, the static hinge plate 410 straddles both sides of the corresponding limiting flanging 240, and one arm of the static hinge plate 410 is fixedly connected to the cabinet body 2; the moving hinge plate 420 is fixedly connected to the back side of the access control mounting plate 210; the hinge shaft 430 is respectively connected to the other arm of the moving hinge plate 420 and the static hinge plate 410; a first avoidance notch 2201 corresponding to the moving hinge plate 420 and the static hinge plate 410 is provided on the cover plate 220. The U-shaped design of the static hinge plate 410 can facilitate the connection between the cabinet body 2 and the access control mounting plate 210, avoid setting an overly large notch on the limiting flanging 240 and affecting the supporting and strengthening effect of the limiting flanging 240 in this area, and is beneficial to ensuring the structural strength of the mounting bracket 20. In this embodiment, the static hinge plate 410 is fixedly connected to the cabinet body 2 through fastening components such as threaded connectors, and the moving hinge plate 420 is fixedly connected to the access control mounting plate 210 through fastening components such as threaded connectors, and the accommodating space can accommodate the end of the fastening component; at the same time, in order to facilitate the installation of the moving hinge plate 420, a first avoidance notch 2201 is provided on the cover plate 220, and the moving hinge plate 420 can be loaded and unloaded without separating the cover plate 220 and the connecting flanging 230.
[0065] In some embodiments, refer to Figures 2 to 6, another arm of the static hinge plate 410 is formed with a second avoidance notch 4101, and the moving hinge plate 420 is placed in the second avoidance notch 4101. During the rotation of the moving hinge plate 420, the second avoidance notch 4101 can provide a larger activity space to avoid affecting the rotation of the moving hinge plate 420.
[0066] Based on the same inventive concept, the embodiment of the present application further provides a cabinet, including a cabinet main body 2 and the above-mentioned flip-up access control structure assembly 1.
[0067] In this embodiment, for the convenience of use, the cabinet main body 2 provided with the flip-up access control structure assembly 1 is located at the front end or the rear end of the cabinet, so as to facilitate the operation of opening the end door.
[0068] Compared with the prior art, the cabinet provided in this embodiment can achieve the storage and protection of the access control main body 10 without disassembling the access control main body 10 by adopting the above-mentioned flip-up access control structure assembly 1, ensuring that operations such as moving the cabinet main body 2 will not bump into the access control main body 10, reducing the operations of disassembling and reinstalling the access control main body 10, and effectively improving the overall operation efficiency.
[0069] In some embodiments, refer to Figures 2 to 6 , in order to realize the power supply of the access control main body 10 and the communication connection with the cabinet door of the cabinet main body 2, a bracket wire passing hole 203 is opened on the mounting bracket 20, and a cabinet body wire passing hole 21 corresponding to the bracket wire passing hole 203 is opened on the side plate of the cabinet main body 2. The connection wire of the access control main body 10 passes through the bracket wire passing hole 203 and the cabinet body wire passing hole 21, and the connection wire is also connected with a counterweight, and the counterweight is located inside the cabinet main body 2. In the unfolded state, the connection wire can pass through the cabinet body wire passing hole 21 and part of it is exposed in the space between the bracket wire passing hole 203 and the cabinet body wire passing hole 21; during the process of switching to the storage state, under the pulling action of the counterweight, the connection wire maintains a straightened state and can smoothly retract into the cabinet main body 2 without being piled up and folded between the mounting bracket 20 and the cabinet main body 2, avoiding damage to the connection wire.
[0070] During specific implementation, a snap ring is sleeved outside the connection wire, and the counterweight is hung on the snap ring to realize the connection with the connection wire, and the weight of the counterweight can also be reasonably adjusted according to actual use requirements, avoiding breaking the connection wire due to excessive weight and also avoiding being unable to straighten the connection wire due to too small weight. In addition, in order to avoid wire breakage, in the storage state, the bracket wire passing hole 203 is preferably aligned with the cabinet body wire passing hole 21.
[0071] On the basis of the above embodiments, refer to Figures 2 to 6, a sealing washer 50 is provided between the bracket wire passing hole 203 and the cabinet body wire passing hole 21. When the mounting bracket 20 is in the retracted state, the sealing washer 50 can form a seal between the mounting bracket 20 and the cabinet body 2. When the bracket is in the deployed state, the sealing washer 50 can also closely abut against the connecting wire on the outer periphery of the connecting wire to ensure the sealing performance of the position where the connecting wire passes through.
[0072] The setting methods of the above-mentioned sealing washer 50 include but are not limited to the following several types:
[0073] 1) The bracket wire passing holes 203 and the cabinet body wire passing holes 21 correspond one by one. In the retracted state, the bracket wire passing hole 203 faces the corresponding cabinet body wire passing hole 21, and sealing washers 50 are provided at both the bracket wire passing hole 203 and the cabinet body wire passing hole 21; in the retracted state, the two opposite sealing washers 50 abut against each other.
[0074] 2) The bracket wire passing holes 203 and the cabinet body wire passing holes 21 correspond one by one. In the retracted state, the bracket wire passing hole 203 and the corresponding cabinet body wire passing hole 21 are arranged in a staggered manner, and sealing washers 50 are provided at both the bracket wire passing hole 203 and the cabinet body wire passing hole 21. In the retracted state, the sealing washer 50 at the bracket wire passing hole 203 abuts against the side wall of the cabinet body 2, and the sealing washer 50 at the cabinet body wire passing hole 21 abuts against the mounting bracket 20, which is not shown in the figure.
[0075] 3) The bracket wire passing holes 203 and the cabinet body wire passing holes 21 correspond one by one and both are provided with multiple ones. In the retracted state, some of the bracket wire passing holes 203 and the corresponding cabinet body wire passing holes 21 are arranged in a staggered manner, and the remaining bracket wire passing holes 203 face the corresponding cabinet body wire passing holes 21. Sealing washers 50 are provided at both the bracket wire passing hole 203 and the cabinet body wire passing hole 21. In the retracted state, the two opposite sealing washers 50 abut against each other, and the two staggered sealing washers 50 respectively abut against the corresponding mounting bracket 20 or the side wall of the cabinet body 2, as Figure 2 shown.
[0076] In some embodiments, referring to Figures 2 to 6 , based on the mounting bracket 20 including an access control mounting plate 210 and a cover plate 220, an inner plate wire passing hole is opened on the access control mounting plate 210, a bracket wire passing hole 203 is opened on the cover plate 220, and a cabinet body wire passing hole 21 is opened on the side wall of the cabinet body 2.
[0077] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A flip-type access control structure assembly, characterized in that, Comprising: An access control main body (10); An installation bracket (20), fixed to the back side of the access control main body (10) and rotatably connected to the cabinet main body (2). The edge of the installation bracket (20) is provided with a storage positioning hole (201) and a deployment positioning hole (202), and the opening directions of the storage positioning hole (201) and the deployment positioning hole (202) are both parallel to the rotation axis of the installation bracket (20); And A positioning component (30), fixed to the cabinet main body (2) and having a positioning end (301) that can move in a direction parallel to the rotation axis. The positioning end (301) can be inserted into the storage positioning hole (201) or the deployment positioning hole (202); The positioning end (301) cooperates with the storage positioning hole (201) to limit the installation bracket (20) in a storage state where it fits against the side wall of the cabinet main body (2); The positioning end (301) cooperates with the deployment positioning hole (202) to limit the installation bracket (20) in a deployed state where it forms an angle with the side wall of the cabinet main body (2).
2. The flip-up access control structure assembly according to claim 1, wherein The positioning component (30) includes: A positioning bracket (310), fixed to the cabinet main body (2); and An elastic telescopic pin (320), provided on the positioning bracket (310) and forming the positioning end (301). The elastic telescopic pin (320) is configured with a pre-tightening force that causes the positioning end (301) to approach the installation bracket (20).
3. The flip-up access control structure assembly according to claim 1, wherein The installation bracket (20) includes: An access control mounting plate (210), which is attached to the back surface of the access control main body (10). The access control mounting plate (210) has two connecting flanges (230) arranged opposite to each other. The two connecting flanges (230) are distributed along the rotation axis, and at least one of the connecting flanges (230) is provided with the storage positioning hole (201) and the deployment positioning hole (202); and A cover plate (220), located on the back side of the access control mounting plate (210) and attached to the connecting flange (230). A receiving space is formed at an interval between the cover plate (220) and the access control mounting plate (210); The flip-up access control structure assembly further includes a hinge assembly (40), and the hinge assembly (40) is connected between the access control mounting plate (210) and the cabinet main body (2). The hinge assembly (40) forms the rotation axis.
4. The flip-up access control structure assembly according to claim 3, wherein, The access control mounting plate (210) further has two limiting flanges (240) arranged opposite to each other. The limiting flanges (240) are adjacent to the connecting flanges (230), and the two limiting flanges (240) can respectively contact and limit the opposite sides of the cover plate (220).
5. The flip-type access control structure assembly according to claim 4, wherein Both ends of the limiting flange (240) extend to the corresponding connecting flange (230) respectively, so that the receiving space forms a closed space.
6. The flip-up access control structure assembly according to claim 4, characterized in that, The hinge assembly (40) includes: The static hinge plate (410) is a U-shaped plate member. The static hinge plate (410) straddles both sides of the corresponding limit flange (240), and one arm of the static hinge plate (410) is attached to and connected with the cabinet body (2); The movable hinge plate (420) is attached to and connected with the access control mounting plate (210); and The hinge shaft (430) is connected to the other arm of the movable hinge plate (420) and the static hinge plate (410) respectively; A first avoidance notch (2201) corresponding to the movable hinge plate (420) and the static hinge plate (410) is formed in the cover plate (220).
7. The flip-up access control structure assembly according to claim 6, characterized in that, A second avoidance notch (4101) is formed in the other arm of the static hinge plate (410), and the movable hinge plate (420) is placed in the second avoidance notch (4101).
8. A cabinet, characterized in that, It includes a cabinet body (2) and a flip-up access control structure assembly as described in any one of claims 1-7.
9. The cabinet according to claim 8, characterized in that, A bracket wire passing hole (203) is formed in the mounting bracket (20), and a cabinet body wire passing hole (21) corresponding to the bracket wire passing hole (203) is formed in the side plate of the cabinet body (2). The connecting wire of the access control main body (10) passes through the bracket wire passing hole (203) and the cabinet body wire passing hole (21), and the connecting wire is also connected with a counterweight, and the counterweight is located inside the cabinet body (2).
10. The cabinet according to claim 9, characterized in that, Sealing washers (50) are provided at the bracket wire passing hole (203) and the cabinet body wire passing hole (21). When the mounting bracket (20) is in the storage state, the sealing washers (50) can form a seal between the mounting bracket (20) and the cabinet body (2).