Barrier gate and gate bar mounting device thereof
The design of the clamping components and limiting components enables a quick and detachable connection between the gate arm and the mechanism, solving the problem of cumbersome disassembly of traditional gate arms and improving the ease of installation and the operating efficiency of the equipment.
Patent Information
- Application Number
- CN202422523302.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-10-17
AI Technical Summary
The existing method of directly connecting the gate arm to the mechanism makes disassembly and replacement cumbersome and makes it difficult to improve the convenience of installation and disassembly.
The design employs a clamping component, including a first receiving groove and a limiting component, to install the gate arm in a detachable manner. Combined with the cooperation of the limiting hole and the limiting component, the gate arm can be quickly fixed and disassembled.
It significantly improves the efficiency of gate arm installation and dismantling, simplifies the installation and dismantling process, reduces maintenance difficulty and cost, and improves the operating efficiency and safety of the equipment.
Smart Images

Figure CN223576994U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of barrier gate, especially a barrier rod mounting device and a barrier gate using the same. BACKGROUND
[0002] Barrier gate is a common vehicle access control device, which is widely used in parking lots, communities, community entrances, toll stations, factory entrances and other places. Its main function is to control the access of vehicles, prevent unauthorized vehicles from entering certain areas, and ensure safety and order.
[0003] Barrier gate is generally composed of a barrier body and a barrier rod. The core in the barrier body is connected with the barrier rod. The core can drive the barrier rod to rise or fall to release or block the vehicle.
[0004] The existing barrier rod is directly connected with the core. When the barrier rod is disassembled or replaced, the barrier rod is removed from the core. The disassembly process is relatively cumbersome and not convenient. SUMMARY
[0005] The main purpose of the utility model is to provide a barrier rod mounting device and a barrier gate using the same, which aims to improve the installation and disassembly convenience of the barrier gate.
[0006] To achieve the above-mentioned purpose, the utility model provides a barrier rod mounting device, comprising:
[0007] The clamping member is configured with a first accommodating groove for detachably mounting the barrier rod of the barrier gate.
[0008] In some embodiments, the clamping member includes a first side wall, a second side wall arranged opposite to the first side wall, and a first bottom wall between the first side wall and the second side wall, which enclose the first accommodating groove.
[0009] In some embodiments, the clamping member further includes a limiting piece, at least one of the first side wall and the second side wall is provided with a limiting hole, and the limiting hole cooperates with the limiting piece to fix the barrier rod in the first accommodating groove.
[0010] In some embodiments, at least one of the first side wall, the second side wall and the first bottom wall is configured with a first clamping part for clamping the barrier rod in the first accommodating groove.
[0011] In some embodiments, the clamping member includes:
[0012] The first clamping part is configured with a first accommodating groove, at least one of the opposite side walls of the first accommodating groove is provided with a threaded hole, and the threaded hole cooperates with a screw to fix the barrier rod in the first accommodating groove.
[0013] A second clamping buckle is disposed in a spaced-apart manner with the first clamping buckle and is configured with a second clamping portion for detachably clamping the gate rod.
[0014] In some embodiments, the second clamping buckle comprises two oppositely disposed side plates and a bottom plate connecting the two side plates, the two oppositely disposed side plates and the bottom plate enclosing a second accommodating groove for accommodating the gate rod, and the second clamping portion is configured in at least one of the two side plates and the bottom plate.
[0015] In some embodiments, the gate rod mounting device further comprises a mounting seat, the clamping member is detachably mounted on the mounting seat, and the mounting seat is used for detachably connecting a core of the barrier gate.
[0016] In some embodiments, the mounting seat is in a strip-shaped arrangement, a middle part is configured with an open third accommodating groove for accommodating at least part of the gate rod; and / or
[0017] The clamping member is snap-connected with the mounting seat.
[0018] In some embodiments, the third accommodating groove comprises two opposite side walls and a bottom wall connecting the two opposite side walls, at least one of the two opposite side walls and the bottom wall is provided with a plurality of connecting holes for connecting the core of the barrier gate.
[0019] Further, the utility model provides a barrier gate which comprises a gate body, a core mounted on the gate body, the gate rod mounting device as recorded in the foregoing embodiments mounted on the core, and a gate rod detachably connected with the gate rod mounting device.
[0020] The gate rod mounting device of the present application is provided with a clamping member which is configured with a first accommodating groove, and the first accommodating groove can be quickly assembled and disassembled with the gate rod. Compared with the conventional screw fixing mode of the gate rod and the core of the barrier gate, the gate rod mounting device of the present application is simple and convenient to operate, greatly improves the production efficiency and saves the replacement and maintenance cost. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a structural schematic view of an embodiment of the gate rod mounting device of the present application;
[0022] Figure 2 It is a partial structural schematic view of an embodiment of the gate rod mounting device of the present application;
[0023] Figure 3 It is a structural schematic view of an embodiment of the gate rod mounting device of the present application mounted with a barrier gate;
[0024] Figure 4 It is a structural schematic view of an embodiment of the gate rod mounting device of the present application mounted with a barrier gate;Figure 1 exploded view;
[0025] Figure 5 is a structural schematic view of the second clamping buckle in the embodiment of the gate rod mounting device;
[0026] Figure 6 is Figure 1 is a structural schematic view in another embodiment of the gate rod mounting device.
[0027] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0028] The embodiments of the present application will be described in detail with reference to the accompanying drawings, and the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0029] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications will also change accordingly.
[0030] It should also be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or can have a middle element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or can have a middle element.
[0031] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the person skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0032] Please refer to Figures 1 to 6 The present application provides a gate rod mounting device, comprising:
[0033] The clamping member 1 is configured with a first accommodating groove 10 for detachably mounting a gate rod of a barrier gate.
[0034] In this embodiment, the core component of the gate rod mounting device is the clamping member 1, which is designed to make the installation and disassembly of the gate rod and the barrier gate core more convenient. The traditional direct connection of the gate rod and the core requires tedious disassembly steps, such as disassembling screws. However, the gate rod mounting device of the present application provides a first accommodating groove 10 in the clamping member 1, which detachably mounts the gate rod in the first accommodating groove 10 to achieve quick and detachable installation of the gate rod and the barrier gate core.
[0035] The clamping member 1, as the core component, is mainly used for fixing the gate rod and for disassembling the gate rod. The first accommodating groove 10 provides a mounting position for the gate rod. Through the design of the first accommodating groove 10, the gate rod can be quickly separated from the barrier gate core, greatly improving production efficiency and saving costs.
[0036] During use, the gate rod will be placed into the first accommodating groove 10 of the clamping member 1, which is used to stably accommodate the gate rod while maintaining a certain flexibility to facilitate disassembly. Unlike the traditional screw fixing connection method, this design allows users to easily install or replace the gate rod without the need for complex tools, greatly improving production efficiency.
[0037] Installation process: The operator only needs to insert the gate rod into the first accommodating groove 10 of the clamping member, and complete the simple fixing operation.
[0038] The gate rod mounting device of the present application achieves the following effects by setting the above structure:
[0039] Significantly improves the installation and disassembly efficiency of the gate rod;
[0040] Simplifies the installation and disassembly process: Compared with the traditional method, users do not need complex tools and a large number of operation steps.
[0041] Reduces maintenance difficulty: When the gate rod needs to be replaced, it can be quickly disassembled, effectively reducing the daily maintenance cost of parking lots, community entrances and other places.
[0042] Saves costs: Since the gate rod can be quickly replaced, maintenance personnel can restore the normal operation of the barrier gate equipment more quickly when damage or failure occurs, reducing the interruption time of traffic.
[0043] In some embodiments, the shape of the first accommodating groove 10 can be set as a circle as shown in Figure 6 , to adapt to the circular gate rod. Those skilled in the art can design according to actual needs, which is not described here.
[0044] In some embodiments, the clamping member 1 can be provided in multiple, connected to the core of the barrier through the intermediate connecting piece, to achieve the transmission effect.
[0045] Referring to Figure 2 In some embodiments, the clamping member 1 includes a first side wall 11, a second side wall 12 and a first bottom wall 13 arranged oppositely, and the first side wall 11, the second side wall 12 and the first bottom wall 13 form a first accommodating groove 10.
[0046] In this embodiment, the principle of the clamping member 1 is to provide fixation and support for the barrier lever through the enclosing structure. The first accommodating groove 10 formed by the first side wall 11, the second side wall 12 and the first bottom wall 13 serves as a space for accommodating the barrier lever, and through the relative arrangement of the three parts, the barrier lever can be stably placed in the groove, and can be quickly disassembled. The symmetrical arrangement of the first side wall 11 and the second side wall 12 provides lateral support to ensure that the barrier lever does not tilt or shift left and right. The first bottom wall 13 serves as a vertical support to support the weight of the barrier lever and ensure that the barrier lever can be securely placed in the clamping member 1. Through the enclosing design of the three walls, the barrier lever can be supported and fixed in multiple directions in the first accommodating groove 10 of the clamping member 1, preventing displacement or loosening during use.
[0047] During use, the operator aligns the barrier lever with the first accommodating groove 10 of the clamping member 1. The barrier lever is slid into the opening direction of the clamping member 1, is guided laterally by the first side wall 11 and the second side wall 12, and is finally supported and fixed by the first bottom wall 13. During this process, due to the combined action of the three walls, the barrier lever can be quickly and stably placed in the clamping member 1 without the need for complex fixing operations using additional tools.
[0048] The effect of the clamping member 1 in this embodiment can be summarized from the following aspects:
[0049] Convenient installation: due to the enclosing design of the first accommodating groove 10, the barrier lever can be easily inserted into the groove, achieving quick installation and saving time and human resources. Users do not need to perform fine alignment or rely on complex tools to complete the installation.
[0050] Structural stability: the lateral support provided by the first side wall 11 and the second side wall 12, and the vertical support provided by the first bottom wall 13, ensure the stability of the barrier lever during use, preventing problems such as shaking or loosening.
[0051] Maintenance simplicity: another significant advantage of this structural design is the convenience of disassembly. Through simple operation, the barrier lever can be quickly removed, facilitating the maintenance and replacement of the device, reducing the difficulty of maintenance and improving the operating efficiency of the device.
[0052] Overall, the clamping member 1 realizes stable gate rod installation and simplifies the disassembly process through the enclosing design of the first side wall 11, the second side wall 12 and the first bottom wall 13, significantly improves the efficiency and convenience of installation and maintenance, while maintaining the overall reliability of the equipment.
[0053] Referring to Figure 1 And Figure 2 In some embodiments, the clamping member 1 also includes a limiting piece 3, at least one of the first side wall 11 and the second side wall 12 is provided with a limiting hole, and the limiting hole cooperates with the limiting piece 3 to fix the gate rod in the first accommodating groove 10.
[0054] In this embodiment, the limiting piece 3 is used to further enhance the fixing effect of the gate rod in the first accommodating groove 10. By providing a limiting hole on the first side wall 11 and / or the second side wall 12, and using the cooperation of the limiting piece 3 and the limiting hole, additional fixation of the gate rod is achieved, thereby enhancing its stability.
[0055] The limiting piece 3 cooperates with the limiting hole provided on the first side wall 11 and / or the second side wall 12 to further firmly fix the gate rod in the first accommodating groove 10.
[0056] The design purpose of the limiting piece 3 is to provide additional constraints on the gate rod by matching the insertion of the limiting hole. Even if the gate rod has been enclosed in the first accommodating groove 10 by the first side wall 11, the second side wall 12 and the first bottom wall 13, the limiting piece 3 further locks the position of the gate rod through the action of the limiting hole, avoiding any possible displacement.
[0057] The limiting hole provides the insertion position and fixing effect of the limiting piece 3, ensuring that the limiting piece can effectively cooperate with other structures in the clamping member 1, enhancing the fixing force of the gate rod.
[0058] The cooperation principle of such limiting piece and limiting hole is similar to the "pin" structure in machinery, which not only provides additional locking function, but also prevents the gate rod from any unintentional sliding or loosening when subjected to external force.
[0059] The action process of the limiting piece 3 and the limiting hole can be divided into two stages: installation and disassembly.
[0060] Installation process: first, the gate rod is inserted into the first accommodating groove 10, which is supported and fixed by the first side wall 11, the second side wall 12 and the first bottom wall 13.
[0061] Then, the operator inserts the limiting piece 3 into the limiting hole. After the limiting piece 3 is inserted, it forms an additional mechanical fixation with the gate rod, further preventing the gate rod from loosening or disengaging.
[0062] When the limiting piece 3 is fully inserted into place, it cooperates with the limiting hole in the first side wall 11 or the second side wall 12, ensuring that the gate lever is firmly fixed in the first accommodating groove 10.
[0063] Disassembly process: When the gate lever needs to be disassembled, the limiting piece 3 needs to be pulled out of the limiting hole first. This step is equivalent to unlocking the additional fixation of the gate lever.
[0064] After pulling out the limiting piece, the gate lever can be easily removed from the first accommodating groove 10 as previously described, and the whole process remains simple and efficient.
[0065] This embodiment further improves the fixing ability of the clamping member 1 by introducing the limiting piece 3 and the limiting hole, with the following significant effects:
[0066] Enhanced fixation: Although the first side wall 11, the second side wall 12 and the first bottom wall 13 have provided basic fixation, in the face of higher strength requirements or complex external environments, the limiting piece 3 provides additional fixation by cooperating with the limiting hole, further preventing the gate lever from shaking or shifting during operation, especially for occasions that require frequent opening and closing.
[0067] Maintain flexibility: Although the limiting piece 3 is added, this embodiment still retains high flexibility. The design of the limiting piece 3 makes it easy to insert and pull out, and when disassembly is needed, the gate lever can still be quickly removed, maintaining maintenance convenience.
[0068] Improve safety: The addition of the limiting piece 3 significantly improves the safety of the gate lever, especially when subjected to large external force impact or vibration, the limiting piece 3 can effectively prevent the gate lever from loosening, thereby ensuring the safety and stability of the system.
[0069] In some embodiments, a limiting hole can also be provided on the gate lever, allowing the limiting piece 3 to pass through the limiting hole. This design further enhances the fixing effect of the gate lever in the first accommodating groove 10. By providing a limiting hole on the gate lever, the limiting piece 3 not only cooperates with the limiting hole in the first side wall 11 or the second side wall 12, but also directly passes through the limiting hole of the gate lever itself, thereby forming a more secure locking mechanism.
[0070] In summary, this embodiment further improves the fixing effect of the gate lever by adding the cooperation of the limiting piece 3 and the limiting hole, while maintaining the simplicity of installation, improving the overall structural stability and safety.
[0071] Reference Figure 1 and Figure 2In some embodiments, at least one of the first side wall 11, the second side wall 12 and the first bottom wall 13 is configured with a first clamping portion 200 for clamping the gate lever in the first accommodating groove 10.
[0072] In this embodiment, at least one of the first side wall 11, the second side wall 12 and / or the first bottom wall 13 is configured with a first clamping portion 200. This design allows the gate lever to be fixed in the first accommodating groove 10 by clamping, further improving the fixing and stability of the gate lever, while maintaining the convenience of installation and removal.
[0073] When the first clamping portion 200 can be detachably connected with the gate lever by itself, the limiting piece 3 and the limiting hole design as described in the previous embodiment can not be used; similarly, to enhance the stability of the connection, the limiting piece 3 and the limiting hole design can also be used while the first clamping portion 200 is provided.
[0074] The main function of the first clamping portion 200 is to lock the gate lever in the first accommodating groove 10 by elastic clamping or mechanical fitting. The clamping portion is usually designed as a protrusion, groove, elastic buckle or other structure that can cooperate with the surface or structure of the gate lever, and uses physical clamping force to prevent the gate lever from moving freely in the accommodating groove.
[0075] The specific design of the first clamping portion 200 can be an elastic structure such as a protrusion or a buckle, which can produce slight elastic deformation when the gate lever is inserted into the first accommodating groove 10, thereby clamping the gate lever. After insertion, the clamping portion will automatically reset and lock the gate lever.
[0076] Clamping principle: relying on the elasticity of the material or the geometric characteristics of the structure, when the gate lever is inserted, the clamping portion can exert a certain pressure on the gate lever to make it fit tightly. Through this clamping, the gate lever not only relies on the surrounding support of the side wall and the bottom wall, but also obtains additional mechanical locking of the clamping portion to prevent it from sliding or coming off.
[0077] The first clamping portion 200 plays an important role in the installation and removal process, which is mainly achieved through the following steps:
[0078] Installation process: when the gate lever is inserted into the first accommodating groove 10, the surface of the gate lever comes into contact with the first clamping portion 200, and the clamping portion will produce slight elastic deformation due to the extrusion of the gate lever, temporarily giving space for the gate lever to pass through.
[0079] When the gate lever is completely inserted into the first accommodating groove 10, the clamping portion will automatically reset and clamp the gate lever through its protrusion, buckle or groove structure, ensuring that the gate lever is securely locked in the groove.
[0080] At this time, the barrier lever is not only supported by the first side wall 11, the second side wall 12, and the first bottom wall 13, but is further fixed due to the action of the clamping part, preventing any accidental loosening or displacement.
[0081] Disassembly process: When disassembling, the operator applies external force to pull the barrier lever out of the first accommodating groove 10. Because the clamping part has elastic or mechanical deformation ability, when the external force reaches a certain degree, the clamping part will deform again, allowing the barrier lever to be detached from the groove.
[0082] After the barrier lever is completely detached, the clamping part automatically returns to the initial position, waiting for the next insertion and clamping.
[0083] By providing the first clamping part 200 on the first side wall 11, the second side wall 12, or the first bottom wall 13, this embodiment realizes the automatic clamping and fixing of the barrier lever, significantly improving the installation and fixing effect, mainly reflected in the following aspects:
[0084] Automatic locking and convenient installation: The elastic or mechanical fitting design of the first clamping part 200 allows the barrier lever to be automatically locked when inserted into the first accommodating groove 10, and the user can complete the installation without additional tools or complex operations. This design simplifies the installation process of the barrier lever and improves work efficiency.
[0085] Enhanced fixation: Compared with traditional fixation methods relying only on gravity or simple support, the first clamping part 200 provides stronger locking force for the barrier lever, preventing it from loosening or shifting due to vibration, wind force, or other external forces during use. Especially in applications that require frequent lifting, such as parking lots or toll stations, the stability of the barrier lever is crucial.
[0086] Flexible disassembly and maintenance convenience: Although the clamping structure provides firm locking, the elastic design of the first clamping part 200 still retains the flexible disassembly characteristics of the barrier lever. By applying appropriate external force, the barrier lever can be quickly disassembled, effectively reducing the time for equipment maintenance and replacement of the barrier lever.
[0087] Improving overall safety: During use, the clamping structure can prevent the barrier lever from accidentally falling out or shaking during operation, thereby improving the safety of the system. This is crucial for protecting equipment and vehicles, as well as pedestrians, especially in situations with high usage intensity or harsh environments.
[0088] In summary, the introduction of the first clamping part 200 significantly improves the fixation effect of the barrier lever in the first accommodating groove 10. Through the automatic clamping mechanism, the barrier lever can be easily locked when inserted, enhancing its stability while maintaining a simple installation and disassembly process. This design not only improves the efficiency and safety of the equipment, but also reduces the complexity of maintenance and replacement, making the barrier gate system more reliable and durable in actual application.
[0089] Referring to Figure 1 and Figure 2 In some embodiments, the clamping member 1 proposed by the embodiments of the utility model comprises:
[0090] The first clamping 101 is configured with a first accommodating groove 10, at least one of the opposite two side walls of the first accommodating groove 10 is provided with a threaded hole 100, and the threaded hole 100 is fixed in the first accommodating groove 10 by cooperating with the screw;
[0091] The second clamping 102 is arranged at intervals with the first clamping 101, and is configured with a second clamping part 300 for detachably clamping the gate rod.
[0092] In the embodiment, the clamping member 1 includes two key components: the first clamping 101 and the second clamping 102, which work together to achieve the fixation and stable installation of the gate rod. The principle, process and effect of the first clamping 101 and the second clamping 102 will be described in detail below.
[0093] 1. The principle, process and effect of the first clamping 101:
[0094] 1.1 Principle:
[0095] The main function of the first clamping 101 is to fix the gate rod through the threaded structure. It is configured with a first accommodating groove 10, which is used to accommodate the gate rod, and cooperates with the screw through the threaded hole 100 to realize the mechanical fixation of the gate rod.
[0096] Threaded hole 100: at least one of the opposite two side walls of the first accommodating groove 10. The screw is screwed into the threaded hole 100, in contact with or through the gate rod, so as to firmly fix it in the first accommodating groove 10.
[0097] Screw fixation principle: the screw cooperates with the threaded hole 100, and provides additional pressure and fixation force for the gate rod by tightening the screw, so as to ensure that it cannot shake or loosen in the accommodating groove.
[0098] 1.2 Process:
[0099] Installation process: the gate rod is inserted into the first accommodating groove 10, and the operator cooperates the screw with the threaded hole 100 to screw the screw into and press the gate rod. The screwing of the screw provides a transverse locking force, so that the gate rod cannot move in the groove.
[0100] Disassembly process: when the gate rod needs to be disassembled, the operator only needs to loosen the screw to make it out of contact with the threaded hole 100, and the gate rod can be easily taken out of the first accommodating groove 10.
[0101] 1.3 Effect:
[0102] Enhanced Fixity: The screw's engagement with the threaded hole 100 provides a strong mechanical fixation effect for the gate lever, preventing it from shifting or loosening during operation. This screw locking method is particularly suitable for situations requiring high strength fixation, capable of handling frequent lifting or vibration.
[0103] Maintaining Structural Stability: The screw's rotation ensures the stability of the gate lever within the first accommodating groove 10. Even when subjected to external force impact or vibration, the tightening effect of the screw can effectively prevent the gate lever from loosening.
[0104] Convenient Disassembly: Despite the use of screw locking, the disassembly process remains relatively simple. The operator only needs to loosen the screw to complete the disassembly or replacement of the gate lever, without the need for additional complex tools.
[0105] 2. The working principle, process, and effect of the second clasp 102:
[0106] 2.1 Working Principle:
[0107] The main function of the second clasp 102 is to achieve detachable fixation of the gate lever through a clamping structure. The second clasp 102 is spaced apart from the first clasp 101 and is constructed with a second clamping part 300, which provides additional fixation or support.
[0108] Second Clamping Part 300: It is usually a flexible or mechanical fitting structure designed to clamp or fit with the surface of the gate lever. When the gate lever is inserted into the clasp, the second clamping part 300 clamps the surface or structure of the gate lever, forming additional clamping force.
[0109] Clamping Principle: The second clamping part 300 clamps the gate lever through flexible deformation or mechanical fitting, making it tightly fit with the second clasp 102, further preventing the movement or slipping of the gate lever.
[0110] 2.2 Working Process:
[0111] Installation Process: The gate lever is first inserted into the first accommodating groove 10 of the first clasp 101 and then extended downward to the second clasp 102. At this time, the second clamping part 300 clamps a certain part of the gate lever, tightly fixing the gate lever. The operator does not need to use additional screws or other tools, and the clamping process is automatically completed.
[0112] Disassembly Process: When the gate lever needs to be disassembled, the operator only needs to apply appropriate external force to overcome the clamping force of the second clamping part 300 and pull the gate lever out of the second clasp 102. Since the clamping part usually has a certain flexibility, the disassembly process is simple and fast.
[0113] 2.3 Effect:
[0114] Flexible clamping: The second clamping part 300 allows the barrier to be quickly and conveniently clamped and installed, avoiding the need for screws or other complex fixing methods. This clamping method is particularly suitable for scenarios where the barrier needs to be frequently disassembled or replaced.
[0115] Enhanced multi-point fixing effect: By cooperating with the first clamping buckle 101, the second clamping buckle 102 provides an additional fixing point, further enhancing the stability of the barrier in the entire system. This multi-point fixing method can effectively reduce the shaking of the barrier during operation and prolong the service life of the system.
[0116] Quick maintenance and replacement: Due to the quick disassembly and assembly characteristics of the clamping method, the second clamping buckle 102 can significantly improve the efficiency of maintenance and replacement. In particular, when the barrier is damaged or fails, the operator can quickly disassemble and replace the new barrier, reducing the downtime of parking lots or toll stations and other places.
[0117] 3. Synergistic effect of the first clamping buckle 101 and the second clamping buckle 102:
[0118] Combination of fixation and flexibility: The first clamping buckle 101 provides strong mechanical fixing force through screws, ensuring that the barrier is stable and immovable in the first accommodating groove 10, while the second clamping buckle 102 provides flexible clamping fixation through the second clamping part 300, enhancing the fixing effect and maintaining the convenience of installation and disassembly.
[0119] Multi-point fixation improves safety: The cooperation of the two clamping buckles can provide fixing support at different positions, reducing the shaking or displacement of the barrier and improving the safety and reliability of the overall structure.
[0120] Efficient installation and maintenance: Through the combination of screws and clamping, the installation and disassembly process of the barrier can meet the high-strength fixing requirements while retaining high operational convenience, suitable for scenarios that require frequent maintenance and efficient operation.
[0121] In summary, the first clamping buckle 101 and the second clamping buckle 102 in the embodiment combine screw fixation and clamping fixation, ensuring the stability of the barrier and providing a convenient installation and disassembly method. Screw fixation provides strong mechanical locking, suitable for long-term stable operation, while clamping fixation provides a flexible disassembly scheme for quick maintenance and replacement. The synergistic effect of the two improves the safety, efficiency, and operational convenience of the entire barrier system.
[0122] Reference Figures 1 to 6 In some embodiments, the second clamping buckle 102 includes two oppositely arranged side plates and a bottom plate connecting the two side plates, the two oppositely arranged side plates and the bottom plate form a second accommodating groove 20 for accommodating the barrier, and the second clamping part 300 is constructed in at least one of the two side plates and the bottom plate.
[0123] In this embodiment, the design of the second clamp 102 forms a second accommodating groove 20 enclosed by two side plates and a bottom plate, used to accommodate and fix the gate lever. The second clamping part 300 is constructed on at least one of the two side plates and the bottom plate, playing a key role in clamping and fixing.
[0124] The second clamp 102 achieves stable clamping of the gate lever through its structural design, mainly relying on the second accommodating groove 20 formed by the two side plates and the bottom plate to accommodate the gate lever. This structure ensures that the gate lever can be stably placed in the groove and further fixed by the second clamping part 300, preventing the gate lever from sliding or loosening.
[0125] Two side plates and a bottom plate: The two side plates provide lateral support to prevent the gate lever from moving left and right, while the bottom plate provides vertical support to support the weight of the gate lever, ensuring that it does not slide up and down in the groove.
[0126] Second accommodating groove 20: Enclosed by two side plates and a bottom plate, it is specially used to accommodate the gate lever and provide basic physical fixation.
[0127] Second clamping part 300: Set in at least one of the two side plates or the bottom plate, it forms a mechanical clamping with the gate lever through elastic deformation or fitting structure, further enhancing the fixing effect.
[0128] During use, the installation and removal process of the second clamp 102 is as follows:
[0129] 2.1 Installation process:
[0130] Gate lever insertion: When the gate lever is inserted into the second accommodating groove 20, the gate lever comes into contact with the two side plates and the bottom plate, gradually entering the fixed position in the groove.
[0131] Clamping and fixing: As the gate lever enters the second accommodating groove 20, the second clamping part 300 will come into contact with the surface of the gate lever and be locked with the gate lever through elastic clamping or fitting mechanism. The clamping part may deform slightly when it comes into contact with the gate lever, and then return to its original position, clamping the gate lever to prevent it from moving freely.
[0132] Final fixation: The gate lever is supported by the two side plates and the bottom plate, and the second clamping part 300 provides additional locking force to ensure that the gate lever is stable in the groove.
[0133] 2.2 Removal process:
[0134] Release clamping: When the gate lever needs to be removed, the operator applies external force to pull the gate lever out of the second accommodating groove 20. At this time, the second clamping part 300 will temporarily release the locking of the gate lever due to the action of external force.
[0135] Gate rod removal: With the release of the clamping force, the gate rod can be smoothly removed from the second accommodating groove 20, the whole process is fast and simple.
[0136] The second clamp 102 realizes stable and flexible fixing of the gate rod through its structural design, which brings the following specific effects:
[0137] First, enhance the fixing: the second accommodating groove 20 provides basic physical support by enclosing the two side plates and the bottom plate, so that the gate rod can be stably placed in the groove to prevent its movement in the horizontal or vertical direction.
[0138] The addition of the second clamping part 300 further improves the fixing effect. Through the clamping method, the gate rod is not only simply placed in the groove, but also mechanically locked by the clamping part to prevent it from loosening or sliding during operation. Especially in situations that require frequent lifting, the clamping fixation is particularly significant.
[0139] Second, flexible installation and disassembly: the clamping structure makes the installation and disassembly process of the gate rod very simple. Compared with the fixing method of screws and the like, the clamping part can quickly realize the fixation and release of the gate rod without additional tools. This design makes the maintenance and replacement of the gate rod more efficient, especially suitable for scenes with high frequency of operation or high maintenance requirements.
[0140] Elastic clamping makes the installation process automatic, and the operator only needs to insert the gate rod into the second accommodating groove 20, and the clamping part will automatically clamp the gate rod without further complex adjustment. Similarly, when disassembling, only a simple external force is needed to easily pull out the gate rod.
[0141] Third, improve safety and stability: through the joint action of the two side plates, the bottom plate and the clamping part, the gate rod is effectively supported in multiple directions, avoiding loosening or displacement due to vibration or impact during operation. Avoid falling or accidental loosening: the mechanical locking structure of the clamping part can ensure that the gate rod remains stable even when subjected to external forces, preventing accidental falling of the gate rod and improving the safety of the system.
[0142] Fourth, improve the service life of the equipment: through the stable fixation of the second clamp 102, the gate rod reduces excessive shaking or friction during operation, which can effectively reduce the wear and tear of the equipment and prolong the service life of the system.
[0143] Fifth, reduce maintenance requirements: due to the simple installation and disassembly and strong fixation effect, the maintenance frequency of the equipment during long-term use is reduced, improving the overall operation efficiency of the system.
[0144] In summary, the second clamp 102 realizes stable and flexible fixation of the gate lever through the design of the two side plates, the bottom plate and the second clamping part 300. The second accommodating groove 20 provides basic support, and the second clamping part 300 further enhances the fixation effect through clamping locking, preventing the gate lever from loosening or shifting. This design not only improves the safety and stability of the gate lever, but also maintains the characteristics of simple installation and disassembly, which is suitable for scenarios that require frequent operation or efficient maintenance, and effectively prolongs the service life of the equipment.
[0145] Reference Figures 1 to 6 In some embodiments, the gate lever mounting device also includes a mounting seat 2, and the clamp member 1 is detachably mounted on the mounting seat 2. The mounting seat 2 is used for detachable connection with the core of the barrier gate.
[0146] In this embodiment, the gate lever mounting device also includes a key component: the mounting seat 2. The design of the mounting seat 2 allows the clamp member 1 to be detachably mounted thereon, and the mounting seat 2 is also used for detachable connection with the core of the barrier gate.
[0147] The main function of the mounting seat 2 is to serve as an intermediate connecting piece for connecting the clamp member 1 (i.e., the component for fixing the gate lever) with the core of the barrier gate. It structurally ensures that the clamp member 1 can be stably mounted thereon, and also provides a firm connection with the core. In addition, the detachable design of the mounting seat 2 allows users to conveniently install and maintain when needed.
[0148] Detachable design: The mounting seat 2 can be connected with the clamp member 1 through screws, buckles or other mechanical connection methods, and can also be connected with the core of the barrier gate through similar methods. This design allows the connection between the components to be not only firm, but also easy to disassemble and replace, increasing the flexibility and convenience of the device.
[0149] Stable support: The mounting seat 2 provides a stable support position for the clamp member 1, ensuring the safety and stability of the entire barrier gate system through firm mechanical connection.
[0150] During installation and disassembly, the mounting seat 2 plays a crucial role, mainly including the following steps:
[0151] Install the clamp member 1: First, the operator detachably fixes the clamp member 1 to the mounting seat 2. This can be achieved through screws, clamping and other methods. The mounting seat 2 provides a stable foundation for the clamp member 1, ensuring that the clamp member 1 does not shift or loosen during installation.
[0152] Mounting to the core: Subsequently, the mounting base 2 will be connected with the core of the barrier. This connection is usually also achieved through screws or buckles, etc., ensuring the stable combination between the mounting base 2 and the core. The core is responsible for driving the lifting of the barrier lever, so the stability of the mounting base 2 directly affects the reliability of the entire system.
[0153] Fixing the barrier lever: After the clamping member 1 has been fixed on the mounting base 2, the barrier lever is fixed in the system through the clamping member 1 (such as the first clamping and the second clamping as mentioned above), forming a complete barrier structure.
[0154] : When replacement or maintenance is needed, the operator can detach the clamping member 1 from the mounting base 2 through simple operation (such as unscrewing the screw or unlocking the clamping device). This step does not require the complete removal of the entire barrier system, but only partial operation is required.
[0155] Separating the mounting base 2 from the core: When deeper maintenance is needed, the mounting base 2 can be separated from the core. Due to the design of being detachable, the disassembly process is relatively convenient, ensuring the efficiency of maintenance and replacement.
[0156] By adding the mounting base 2 to the barrier system, the following significant effects are brought about by the present embodiment:
[0157] Firstly, it improves the convenience of installation and disassembly of the system.
[0158] Modular design: The mounting base 2 serves as an intermediate connecting component, realizing the modular connection of the clamping member 1 and the core. This design allows users to replace or maintain a part without having to disassemble the entire barrier system, reducing the workload and time cost.
[0159] Simplifying maintenance and replacement: Due to the detachable connection between the mounting base 2 and the clamping member 1 and the core, the daily maintenance and replacement of parts of the system are more convenient. The operator can quickly replace the damaged clamping member or barrier lever, greatly improving the maintenance efficiency of the system.
[0160] Secondly, it enhances the stability and safety of the system.
[0161] Stable support and mechanical connection: The mounting base 2 provides a solid mounting foundation. It not only ensures the stable connection of the clamping member 1 and the core, but also reduces the vibration and displacement of the barrier lever during operation, thereby improving the operational stability of the entire system.
[0162] Prevents loosening and misalignment: The design of the mounting base 2 can effectively prevent the clamping member 1 from loosening, displacing or misaligning during use, ensuring that the barrier lever remains stable during operation and preventing system failure or barrier lever falling due to loosening, thereby ensuring the safety of vehicles and personnel.
[0163] Thirdly, improve the flexibility and adaptability of the system.
[0164] Adapt to different specifications of the core and gate lever: due to the detachable design of the mounting seat 2, the system can be adjusted and customized according to different application occasions. For example, users can replace different types of clamping members or gate levers without the need to replace the entire barrier system. The flexibility of the mounting seat 2 makes the barrier system have higher adaptability and can meet different occasions and needs.
[0165] Fourthly, improve the service life of the system.
[0166] Prolong the service life of the equipment: through the modular and detachable design realized by the mounting seat 2, the key components of the system can be regularly maintained or replaced according to the use condition, thereby prolonging the service life of the entire equipment. Reduces the overall system update cost caused by component aging or damage.
[0167] In summary, the mounting seat 2 in the embodiment plays a stable connection role between the clamping member 1 and the barrier core through its detachable design. It not only improves the installation and disassembly convenience of the system, facilitates daily maintenance and replacement, but also enhances the overall stability and safety of the system. The modular design of the mounting seat 2 provides flexibility for the barrier system, so that the system can be adjusted and optimized according to the needs, ultimately prolonging the service life of the equipment and improving the work efficiency.
[0168] Reference Figures 1 to 6 In some embodiments, the mounting seat 2 proposed in the embodiment of the utility model is strip-shaped, and a third accommodation groove 40 in an open shape is constructed in the middle part, which is used to accommodate at least part of the gate lever.
[0169] In some embodiments, the clamping member 1 is connected with the mounting seat 2 through buckling.
[0170] In the embodiment, the mounting seat 2 is designed as a strip-shaped structure, and a third accommodation groove 40 in an open shape is constructed in the middle part, which is used to accommodate at least part of the gate lever. In addition, the clamping member 1 is connected with the mounting seat 2 through buckling. The following is a detailed analysis of the working principle, working process and working effect of the mounting seat 2.
[0171] The middle part of the mounting seat 2 is provided with a third accommodation groove 40 in an open shape, which mainly serves to provide additional accommodation space for the gate lever. Part or all of the gate lever can be embedded in the third accommodation groove 40, enhancing the connection stability of the gate lever and the mounting seat.
[0172] The open design of the third accommodation groove 40: allows the gate lever to be inserted into the groove from above, providing a convenient installation method, while ensuring the stable placement of the gate lever in the groove.
[0173] Strip-shaped design: The strip-shaped mounting seat provides a larger contact area, enhancing the support effect between the mounting seat and the gate lever, avoiding the gate lever from shaking or shifting during operation.
[0174] The clamping member 1 is connected with the mounting seat 2 through the buckle structure, which makes the installation and disassembly process more simple and efficient, while ensuring the stability of the structure.
[0175] The clamping member 1 and the mounting seat 2 are fixed through the buckle mechanism, which can be installed and disassembled without using screws or other complex tools, greatly improving the convenience of operation. The buckle structure is usually composed of elastic buckles or embedded buckles, which ensures firmness while maintaining flexibility, facilitating quick replacement or maintenance.
[0176] During installation, first place the gate lever in the third accommodating groove 40: During installation, the gate lever is first partially or completely placed in the third accommodating groove 40. The insertion of the gate lever can be completed by simple vertical operation, and since the groove body is designed as an open design, the operation is convenient and accurate.
[0177] Buckle connection of the clamping member 1 and the mounting seat 2: After the gate lever is in place, the operator installs the clamping member 1 on the mounting seat 2 through the buckle structure. The buckle mechanism usually relies on elastic deformation, and the operator only needs to exert slight pressure to firmly connect the clamping member 1 and the mounting seat 2.
[0178] Final fixation of the gate lever: Once the clamping member 1 and the mounting seat 2 are successfully buckled and connected, the gate lever is firmly fixed in the mounting seat and will not loosen or detach due to external force or vibration.
[0179] When disassembling, first release the buckle connection: When the gate lever needs to be disassembled or replaced, the operator can easily release the buckle connection between the clamping member 1 and the mounting seat 2 by simple operation. Usually, it can be easily separated by exerting a certain external force.
[0180] Remove the gate lever: After the buckle connection is released, the gate lever can be easily removed from the third accommodating groove 40, and the disassembly process is quick and simple.
[0181] The gate lever mounting device with the above structure achieves the following effects:
[0182] First, it enhances the stability of the gate lever. The third accommodating groove 40 provides additional support for the gate lever, enhancing the stable connection between the gate lever and the mounting seat. This multi-point support design allows the gate lever to remain stable when subjected to external forces or vibrations, avoiding the risk of shaking or falling off.
[0183] The strip-shaped design ensures that there is enough contact area between the mounting seat and the gate lever, further improving the impact resistance and durability of the system.
[0184] Secondly, it improves the ease of installation and disassembly. The snap-fit connection design simplifies the installation and disassembly process of the gate arm. Compared with the traditional screw fixing method, the snap-fit connection requires no additional tools, and users can complete the operation manually, greatly improving the efficiency of installation and maintenance.
[0185] Quick maintenance and replacement: The flexibility of the snap-fit connection allows for faster component replacement during routine maintenance and troubleshooting, thereby reducing equipment downtime in parking lots, community entrances and exits, and other locations.
[0186] Third, it improves the system's flexibility and adaptability. It accommodates gate arms of different sizes or types: because the third receiving slot 40 is an open design, it can accommodate gate arms of different diameters or shapes, improving the system's versatility and enabling it to adapt to different application needs.
[0187] Modular design: The strip design and detachable clip structure of mounting base 2 give the system good modular expandability. Users can flexibly adjust or replace the gate arm and mounting base according to different needs, thereby improving the system's adaptability.
[0188] Fourth, it enhances the system's safety and durability. Multiple securing mechanisms: Through the snap-fit connection between the third receiving slot 40 and the clamping member 1, the gate arm is effectively secured in multiple directions, reducing safety hazards caused by equipment loosening. Simultaneously, the robust connection between the mounting base and the mechanism ensures the overall reliability of the system.
[0189] Fifth, enhanced durability. Multi-point support and snap-fit connections effectively distribute the stress on the system during operation, reducing wear on individual parts and extending the system's service life.
[0190] In summary, the mounting base 2 in this embodiment enhances the installation stability and ease of disassembly of the gate arm through innovative structures such as the strip design, the third receiving groove 40, and the snap-fit connection. The third receiving groove 40 provides additional support, making the positioning of the gate arm in the system more stable, while the snap-fit connection between the clamping component 1 and the mounting base 2 simplifies the operation process and improves the efficiency of maintenance and replacement. This design not only improves the safety and stability of the system but also has flexible adaptability and modular expansion capabilities, making it suitable for various gate system scenarios requiring efficient operation.
[0191] Reference Figures 1 to 6 In some embodiments, the third receiving groove 40 proposed in this utility model embodiment includes two opposite side walls and a bottom wall connecting the two opposite side walls. At least one of the two opposite side walls and the bottom wall is provided with a plurality of connecting holes 400, which are used to connect the mechanism of the barrier gate.
[0192] In this embodiment, the third accommodating groove 40 is enclosed by two opposite side walls and a bottom wall. This structure not only provides space for accommodating the barrier lever, but also achieves connection with the barrier core through the design of several connection holes 400 on the side walls or bottom wall. The following will analyze the principle, process and effect of the third accommodating groove 40 and its connection holes in detail.
[0193] The core function of the third accommodating groove 40 is to provide a stable space for accommodating and fixing the barrier lever, and at the same time, to achieve reliable mechanical connection with the core of the barrier through the connection holes 400.
[0194] Two opposite side walls and a bottom wall: These three surfaces enclose a space (i.e. the third accommodating groove 40), which is used to carry part or all of the barrier lever. These structures not only support the weight of the barrier lever, but also prevent the barrier lever from moving left or right or up and down due to external forces.
[0195] Connection holes 400: Provided on the side walls or bottom walls of the third accommodating groove 40, used for mechanical connection with the core of the barrier. Through these connection holes, bolts or other fasteners can stably fix the mounting seat 2 to the core, ensuring the safe operation of the entire barrier system.
[0196] Installation process:
[0197] Installation of the barrier lever: Part or all of the barrier lever will be inserted into the third accommodating groove 40, and the two side walls and the bottom wall in the groove provide basic support for the barrier lever, preventing it from moving left or right, up or down. The installation of the barrier lever depends on the size and shape design of the third accommodating groove 40, ensuring that the barrier lever can precisely fit the groove body.
[0198] Connection of the mounting seat 2 with the core: The operator uses screws or bolts and other fasteners to fix the mounting seat 2 to the core of the barrier through the connection holes 400. These connection holes ensure that the mounting seat can form a stable and reliable mechanical connection with the core, ensuring that the barrier will not loosen or move during operation.
[0199] Installation of the clamping member 1: After fixing the mounting seat 2 to the core, the operator can buckle the clamping member 1 with the mounting seat 2, thus completing the installation of the entire barrier device.
[0200] Disassembly process: Disconnection with the core: When system maintenance or replacement is needed, the operator will first remove the bolts or screws from the connection holes 400, and remove the mounting seat 2 from the core.
[0201] Remove the barrier lever: With the separation of the mounting seat from the core, the barrier lever can also be easily removed from the third accommodating groove 40. The entire disassembly process is fast and convenient, greatly simplifying maintenance and replacement operations.
[0202] The application achieves the following effects by setting the mounting seat 2 with the above structure:
[0203] Firstly, it provides stable gate rod support. The third accommodating groove 40 forms a stable support structure through the enclosure of the two side walls and the bottom wall, ensuring that the gate rod does not sway left and right or up and down during the operation of the barrier gate. This design is particularly suitable for high-frequency switching occasions, effectively reducing the displacement risk of the gate rod and improving the operational stability of the system.
[0204] Secondly, it realizes reliable core connection. The design of the connection holes 400 enables the mounting seat 2 to be stably connected with the core of the barrier gate. Through these holes, screws or other fasteners fix the mounting seat to the core, forming a firm connection structure. This reliable mechanical connection ensures that the barrier gate does not loosen during frequent use, helping to extend the service life of the equipment.
[0205] Thirdly, it enhances the anti-vibration performance: the number and position distribution of the connection holes are reasonable, which can effectively disperse the stress of the system during work, reduce the wear and loosening risk of the connection parts, and improve the anti-vibration performance of the equipment.
[0206] Fourthly, it improves the flexibility of installation and maintenance. The arrangement of the connection holes 400 makes the installation and disassembly process more flexible. The operator can easily remove or install the connecting parts between the mounting seat and the core according to actual needs, realizing quick replacement and maintenance, and reducing equipment downtime.
[0207] Fifthly, it simplifies daily maintenance. Through the connection holes, the operator can conveniently replace the mounting seat or gate rod, simplifying the maintenance work of the barrier gate system, especially in high-frequency use occasions, the efficiency of maintenance is crucial to improve the overall operational efficiency of the system.
[0208] Sixthly, it improves the adaptability and safety of the system.
[0209] Strong compatibility: due to the flexible design of the connection holes 400, the mounting seat 2 can be adapted to different core designs, adapting to various models of barrier gate cores, thereby improving the compatibility and adaptability of the system.
[0210] Improved safety: through multi-point connection, the connection holes ensure the close fit of the mounting seat and the core, preventing the gate rod from falling or the system from failing due to loosening, ensuring the safe operation of the equipment under various working conditions.
[0211] In summary, the design of the third accommodating groove 40 in this embodiment provides stable support for the gate rod through the two side walls and the bottom wall, and the connecting hole 400 ensures reliable mechanical connection between the mounting seat 2 and the gate core. This design not only improves the stability and shock resistance of the gate rod, but also simplifies the installation and maintenance process of the system, enhances the flexibility and safety of the equipment. Through the reasonable layout of the connecting hole, the system can quickly realize cooperation with the core, ensuring that the gate device operates in an efficient and safe environment.
[0212] Further, the utility model discloses a kind of gate, including gate body, the machine core installed in gate body, the gate rod mounting device as described in preceding embodiment is installed in machine core, and the gate rod can be detachably connected to gate rod mounting device.
[0213] The above-mentioned is only part or preferred embodiment of the utility model, neither words nor drawings can limit the scope of protection of the utility model, equivalent structural transformation using the utility model specification and drawing contents, or direct / indirect application in other related technical fields under the concept of the whole of the utility model are included in the scope of protection of the utility model.
Claims
1. A barrier gate mounting device, characterized by, The gate rod mounting device comprises: a clamping member configured with a first accommodating groove for detachably mounting a gate rod of a barrier gate; wherein the clamping member comprises a first sidewall, a second sidewall oppositely arranged and a first bottom wall between the first sidewall and the second sidewall, and the first sidewall, the second sidewall and the first bottom wall form the first accommodating groove.
2. The gate bar mounting device of claim 1, wherein The clamping member further comprises a limiting member, and at least one of the first sidewall and the second sidewall is provided with a limiting hole, and the limiting hole cooperates with the limiting member to fix the gate rod in the first accommodating groove.
3. The gate bar mounting device of claim 1, wherein At least one of the first sidewall, the second sidewall and the first bottom wall is configured with a first clamping part for clamping the gate rod in the first accommodating groove.
4. The gate bar mounting device of claim 1, wherein The clamping member comprises: a first clamping member configured with a first accommodating groove, and at least one of opposite sidewalls of the first accommodating groove is provided with a threaded hole, and the threaded hole cooperates with a screw to fix the gate rod in the first accommodating groove; a second clamping member arranged apart from the first clamping member and configured with a second clamping part for detachably clamping the gate rod.
5. The gate bar mounting device of claim 4, wherein The second clamping member comprises two oppositely arranged side plates and a bottom plate connecting the two side plates, and the two oppositely arranged side plates and the bottom plate form a second accommodating groove for accommodating the gate rod, and the second clamping part is configured in at least one of the two side plates and the bottom plate.
6. The gate bar mounting device according to any one of claims 1 to 5, wherein The gate rod mounting device further comprises a mounting seat, and the clamping member is detachably mounted on the mounting seat, and the mounting seat is used for detachably connecting a core of the barrier gate.
7. The gate bar mounting device of claim 6, wherein The mounting seat is in a strip shape, and a third accommodating groove in an open shape is configured in the middle part of the mounting seat, and the third accommodating groove is used for accommodating at least part of the gate rod; and / or The clamping member is snap-connected with the mounting seat.
8. The gate bar mounting device of claim 7, wherein, The third accommodating groove comprises two opposite sidewalls and a bottom wall connecting the two opposite sidewalls, and at least one of the two opposite sidewalls and the bottom wall is provided with a plurality of connecting holes for connecting the core of the barrier gate.
9. A barrier gate, characterized by The barrier gate comprises a gate body, a core mounted on the gate body, a gate rod mounting device as claimed in any one of claims 1 to 8 mounted on the core, and a gate rod detachably connected to the gate rod mounting device.