Intelligent gate assembly structure without welding assembly
The assembly design, which combines mortise and tenon joints with bolt reinforcement, solves the problems of high cost and difficult maintenance associated with traditional welding assembly methods. This enables convenient installation and high stability of the intelligent gate, enhancing its safety and service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN HIPOTIAN INTELLIGENT TECH CO LTD
- Filing Date
- 2025-04-11
- Publication Date
- 2026-04-17
AI Technical Summary
Traditional intelligent turnstiles require professional welders for welding assembly, which is costly and difficult to maintain, affecting equipment performance and lifespan.
It adopts a structural design with mortise and tenon joints and mating grooves, combined with bolt reinforcement, to achieve assembly without welding, and is equipped with grating sensors and shock-absorbing pads to improve assembly efficiency and safety.
It simplifies the assembly process, reduces installation difficulty and maintenance costs, improves equipment stability and safety, and extends service life.
Smart Images

Figure CN224133605U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of intelligent security equipment technology, and in particular to an intelligent gate assembly structure that does not require welding assembly. Background Technology
[0002] In today's era of rapid intelligent development, intelligent turnstiles, as key equipment for managing the passage of people and goods, are widely used in many fields such as transportation hubs, commercial venues, and office areas. They not only bear the important responsibility of maintaining order and ensuring security, but their operational stability, ease of assembly and maintenance also directly affect the operational efficiency and user experience of the venue.
[0003] In the manufacturing of intelligent turnstiles, traditional assembly methods largely rely on welding. While welding can ensure the structural integrity of the turnstile to a certain extent, it presents several significant problems. First, welding requires highly skilled operators, necessitating specialized welders. This not only increases labor costs but also makes the welding quality highly susceptible to human error. Welding defects can severely impact the overall performance and lifespan of the turnstile. Second, when a turnstile malfunctions and requires repair, disassembling and repairing the welded parts is extremely difficult, often requiring substantial time and effort. In some cases, the entire component may even be rendered unusable due to irreparable damage, resulting in resource waste and increased costs. Utility Model Content
[0004] In order to overcome the shortcomings mentioned in the background art, this utility model provides an intelligent gate assembly structure that does not require welding.
[0005] Technical Solution: A smart gate assembly structure that does not require welding includes a base, side plates, vertical plates, tenons, a top cover, a smart recognition module, a gate opening / closing plate, and a micro stepper motor. Two bases are symmetrically distributed, serving as the main support for the gate. Each base is equipped with two vertical plates, each with tenons at its upper and lower ends. The top of the base has corresponding mortises on both sides that fit the tenons. The two corresponding vertical plates are inserted into the mortises of the base via the tenons at their lower ends. Each base also has two side plates, each with mating grooves at both ends. The side plates engage with the sides of the two vertical plates via these grooves. The base, side plates, and vertical plates work together... A basic framework is formed, with a top cover assembled between these components. The top cover also has mortise and tenon joints at both ends. The tenons at the top of the side plates engage with the mortise and tenon joints of the top cover. Multiple bolts are installed at intervals at the connection points between the base, side plates, and vertical plates to complete the assembly of the entire outer frame structure of the turnstile. Micro stepper motors are installed on the side plates of the two turnstiles that are close to each other. The output shafts of the micro stepper motors are connected to the opening and closing gate plates. The lower ends of the opening and closing gate plates are rotatably connected to the side plates. Intelligent recognition modules are symmetrically installed on the top of the top covers of the two turnstiles. The two intelligent recognition modules face the two sides respectively. Both the micro stepper motors and the intelligent recognition modules are electrically connected to the control system of the turnstiles.
[0006] In addition, it is particularly preferred that the system also includes grating sensors, with grating sensors installed on the inner side of the top cover of both turnstiles, and the grating sensors are electrically connected to the control system of the turnstiles.
[0007] Furthermore, it is particularly preferred that the base also includes rivets, with rivets installed at all four corners of the base.
[0008] In addition, it is particularly preferred that the base also includes a shock-absorbing pad, which is fixed to the bottom of the base by adhesive.
[0009] In addition, it is particularly preferred that the shock-absorbing pad is made of rubber and that the shock-absorbing pad is firmly attached to the bottom of the base using high-strength environmentally friendly adhesive.
[0010] Furthermore, it is particularly preferred that the opening and closing gate is in the shape of a rectangular flat plate, with a shaft hole at the lower end for rotatable connection, which cooperates with the shaft on the side plate, and the material is a lightweight alloy.
[0011] Compared with the prior art, the present invention has the following advantages: 1. It adopts a structural design with mortise and tenon, and mating groove, etc. The vertical plate, side plate and top cover can be initially assembled by simple plugging and snapping, and then reinforced with bolts. No complicated welding process is required, which greatly improves the assembly efficiency, reduces the installation difficulty, and facilitates later maintenance and disassembly.
[0012] 2. A light curtain sensor is installed to form a light curtain in the gate channel. When a person passes through the gate and blocks the light curtain, the sensor can detect it in real time and feed back the information to the control system to ensure that the gate remains open during the passage of people, avoid the gate closing accidentally and causing injury to people, and effectively protect the safety of the people passing through. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0014] Figure 2 This is a three-dimensional structural diagram of the base, side plate, and vertical plate of this utility model.
[0015] Figure 3 This is a partial sectional view of the present invention.
[0016] Figure 4 This is an exploded view of the present invention.
[0017] The above-mentioned attached drawings include the following reference numerals: 1. base, 11. tenon, 2. side plate, 21. mating groove, 3. vertical plate, 31. tenon, 4. top cover, 5. intelligent recognition module, 6. opening and closing gate, 61. micro stepper motor, 7. grating sensor, 8. rivet, 9. shock absorption pad. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this utility model. Furthermore, descriptions of well-known structures and technologies are omitted in the following description to avoid unnecessarily obscuring the concept of this utility model.
[0019] Example: An intelligent gate assembly structure that does not require welding, such as... Figures 1-4As shown, the device includes a base 1, side plates 2, vertical plates 3, tenons 31, a top cover 4, an intelligent recognition module 5, a gate opening / closing plate 6, a grating sensor 7, and a micro stepper motor 61. Two bases 1 are provided, symmetrically distributed left and right, serving as the main support for the gate. Each base 1 is equipped with two vertical plates 3, with tenons 31 connected to the upper and lower ends of each vertical plate 3. The front and rear sides of the top of the base 1 have corresponding mortises 11 that fit the tenons 31. The two corresponding vertical plates 3 are inserted into the mortises 11 of the base 1 through the lower tenons 31, initially completing the connection of the vertical plates 3. Each base 1 is also equipped with two side plates 2, with mating grooves 21 at the front and rear ends of each side plate 2. The side plates 2 are connected to the front and rear sides through the mating grooves 21. The side of the vertical plate 3 is snapped together, thus achieving the initial assembly of the side plate 2. At this time, the base 1, side plate 2, and vertical plate 3 together form a basic frame. A top cover 4 is assembled between the tops of these components. The front and rear ends of the top cover 4 are also provided with tenons 11. The tenon 31 at the upper end of the side plate 2 is snapped into the tenon 11 of the top cover 4 to fix the top cover 4. In addition, multiple bolts are installed at intervals at the connection between the base 1, side plate 2, and vertical plate 3 to ensure the stable assembly of the entire outer frame structure of the gate. After installation, the two gates are symmetrically distributed from left to right. A micro stepper motor 61 is installed on each of the two side plates 2 that are close to each other. The output shaft of the micro stepper motor 61 is connected to the opening and closing gate plate 6. The opening and closing gate plate 6 is shaped as follows: The device is a rectangular flat plate with a rotatable shaft hole at the bottom for rotational connection, engaging with a shaft on the side plate 2. Made of lightweight alloy, it ensures sufficient strength to withstand frequent opening and closing actions while reducing its weight and lowering the drive load on the micro stepper motor 61. Two intelligent recognition modules 5 are symmetrically installed on the top covers 4 of the two turnstiles, facing forward and backward respectively, for facial recognition of personnel in one direction and one direction of exit. Both the micro stepper motor 61 and the intelligent recognition module 5 are electrically connected to the turnstile's control system. When a user passes through the turnstile, the corresponding intelligent recognition module 5 recognizes the user's face. If the face match is successful, the system sends a command to the turnstile's control system, and the micro stepper motor 61... 1. The system immediately starts, driving the gate 6 to rotate and open the passage, allowing personnel to pass through. If the matching fails, the gate remains closed, preventing unauthorized personnel from entering. Both gates have a light grating sensor 7 installed inside the top cover 4. The light grating sensor 7 is electrically connected to the gate's control system. When the light grating sensor 7 is connected to a power source, it forms a light curtain in the gate passage. When a user passes through the gate, if the user's body blocks the light curtain, the light grating sensor 7 will detect this situation in real time and transmit the information to the gate's control system. After receiving the signal, the control system ensures that the gate remains open until the user has completely passed through the gate and the light curtain is no longer blocked, thus effectively preventing the gate from accidentally closing and hitting the user when passing through.
[0020] During assembly, this intelligent turnstile utilizes a specific structural design for convenient installation. First, based on base 1, the mortise 11 at the top of base 1 precisely aligns with the tenon 31 at the lower end of vertical plate 3, achieving initial fixation of vertical plate 3 and establishing a vertical support structure. Next, side plate 2, with its front and rear end grooves 21, tightly engages with the sides of the installed vertical plate 3, thus forming a basic frame. Subsequently, top cover 4, relying on its front and rear end mortise 11, engages with the tenon 31 at the upper end of side plate 2, completing the top closure. At the connection points of the above components, bolts are installed at intervals to further tighten the connections, ensuring the stability of the entire outer frame structure. The entire assembly process, based on the mortise and tenon joint and bolt reinforcement, eliminates the need for welding, ensuring both assembly efficiency and the stability and integrity of the turnstile structure.
[0021] like Figures 1-4 As shown, it also includes rivets 8. Rivets 8 are installed at the four corners of the base 1. When installing the gate, the rivets 8 on the base 1 can be directly and vertically inserted into the ground, which can realize the rapid positioning and installation of the base 1, effectively improve the installation efficiency, and at the same time ensure that the base 1 has a stable initial positioning on the ground, laying a solid foundation for the subsequent installation of the overall gate structure.
[0022] like Figures 1-4 As shown, it also includes a shock-absorbing pad 9. The shock-absorbing pad 9 is fixed to the bottom of the base 1 using a high-strength environmentally friendly adhesive to ensure that it will not fall off during long-term use. The shock-absorbing pad 9 has a dual function: on the one hand, it can ensure that the base 1 is in close contact with the ground, reducing the shaking of the base 1 caused by uneven ground and other factors; on the other hand, during the operation of the gate, the shock-absorbing pad 9 can effectively absorb and buffer the vibration generated by mechanical operation and personnel passage, playing a shock-absorbing role for the entire gate, thereby extending the service life of the gate's components. Furthermore, the shock-absorbing pad 9 is made of rubber, which has high elasticity and good shock absorption and noise reduction performance, and can effectively absorb the vibration generated during the operation of the gate.
[0023] The above embodiments are provided for those skilled in the art to implement or use the present invention. Those skilled in the art can make various modifications or changes to the above embodiments without departing from the inventive concept of the present invention. Therefore, the protection scope of the present invention is not limited to the above embodiments, but should be the maximum scope that conforms to the innovative features mentioned in the claims.
Claims
1. An assembly structure of an intelligent gate without welding assembly, characterized in that, The system includes a base (1), side plates (2), vertical plates (3), tenons (31), a top cover (4), an intelligent identification module (5), a gate opening and closing plate (6), and a micro stepper motor (61). There are two bases (1) arranged symmetrically to serve as the main support for the gate. Each base (1) is equipped with two vertical plates (3), and the upper and lower ends of the vertical plates (3) are respectively connected to tenons (31). The top two sides of the base (1) are respectively provided with mortises (11) that are compatible with the tenons (31). The two vertical plates (3) are inserted into the mortises (11) of the base (1) through the tenons (31) at the lower end. Each base (1) is also equipped with two side plates (2), and the two ends of the side plates (2) are respectively provided with mating grooves (21). The side plates (2) are engaged with the sides of the two vertical plates (3) through the mating grooves (21). The base (1), side plates (2), and vertical plates (3) are connected. Together, they form a basic framework. A top cover (4) is assembled between the tops of these components. The top cover (4) also has mortises (11) at both ends. The tenon (31) at the top of the side plate (2) is engaged with the mortises (11) of the top cover (4). Multiple bolts are installed at intervals at the connection between the base (1), the side plate (2) and the vertical plate (3) to complete the assembly of the entire outer frame structure of the gate. Micro stepper motors (61) are installed on the side plates (2) of the two gates that are close to each other. The output shaft of the micro stepper motor (61) is connected to the opening and closing gate plate (6). The lower end of the opening and closing gate plate (6) is rotatably connected to the side plate (2). Intelligent identification modules (5) are symmetrically installed on the top of the top cover (4) of the two gates. The two intelligent identification modules (5) face the two sides respectively. The micro stepper motor (61) and the intelligent identification module (5) are electrically connected to the control system of the gate.
2. The smart gate assembly structure without welding assembly according to claim 1, characterized in that, It also includes a grating sensor (7). The grating sensor (7) is installed on the inside of the top cover (4) of both gates. The grating sensor (7) is electrically connected to the control system of the gate.
3. The smart gate assembly structure without welding assembly according to claim 2, characterized in that, It also includes rivets (8), and rivets (8) are installed at the four corners of the base (1).
4. The smart gate assembly structure without welding assembly according to claim 3, characterized in that, It also includes a shock-absorbing pad (9), and the bottom of the base (1) is fixed with the shock-absorbing pad (9) by adhesive.
5. The smart gate assembly structure without welding assembly according to claim 4, characterized in that, The shock-absorbing pad (9) is made of rubber and is firmly attached to the bottom of the base (1) using high-strength environmentally friendly adhesive.
6. The smart gate assembly structure without welding assembly according to claim 5, characterized in that, The opening and closing gate (6) is a rectangular flat plate with a shaft hole at the bottom for rotational connection, which cooperates with the shaft on the side plate (2), and is made of lightweight alloy.