Door row for barrier gate and barrier gate

By adopting a structural design of main rod, auxiliary rod, and flipping vertical rod device in the flap gate, the problem of gate deformation under windy weather is solved, and better stability is achieved under wind force.

CN223675218UActive Publication Date: 2025-12-16SHENZHEN CHIAN TECH CO LTD
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Patent Information

Application Number
CN202422669618.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-12-16
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

Existing flap gates are prone to deformation due to strong forces during windy weather, resulting in poor stability.

Method used

The structure adopts a main pole, a secondary pole, and multiple tilting vertical pole devices. The main pole and the secondary pole are connected. The tilting vertical pole device includes a main pole connecting assembly, a secondary pole connecting assembly, and a vertical pole assembly. The two ends of the vertical pole assembly are connected to the main pole and the secondary pole connecting assembly, respectively. There are gaps between the vertical poles to reduce wind resistance.

Benefits of technology

In windy weather, the wind can flow through the gaps in the vertical bars, reducing the force on the gate and improving stability to prevent deformation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The gate row comprises a main rod, an auxiliary rod and a plurality of overturning vertical rod devices, the main rod and the auxiliary rod are both in a long strip shape and are parallel to each other, and the overturning vertical rod devices are arranged between the main rod and the auxiliary rod in the length direction of the main rod. Each overturning vertical rod device comprises a main rod connecting assembly, an auxiliary rod connecting assembly and a vertical rod assembly, the main rod connecting assembly is connected with the main rod, the auxiliary rod connecting assembly is connected with the auxiliary rod, the two ends of the vertical rod assembly are connected with the auxiliary rod connecting assembly and the main rod connecting assembly respectively, and the auxiliary rod connecting assembly and the main rod connecting assembly are used for driving the vertical rod assembly to overturn; the vertical rod assembly comprises at least two vertical rods, and a gap is formed between every two adjacent vertical rods. In windy weather, wind can penetrate through the gaps between the vertical rods, the resistance borne by the wind in the flowing process is reduced, namely, the acting force of the wind on the door row is reduced, the door row cannot deform, and the stability is better.
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Description

TECHNICAL FIELD

[0001] The utility model relates to barrier gate technical field especially relates to a door row for barrier gate and barrier gate. BACKGROUND

[0002] Barrier gate is an indispensable part in parking lot system, which can help to manage vehicles and make vehicles orderly enter and exit the parking lot. The flap barrier gate is a type of barrier gate, which has the functions of advertising and vehicle management. The door row of the flap barrier gate is composed of multiple flap blades. When the door row is lowered, the flap blades are fully unfolded to display the advertisement. When the door row is lifted, the flap blades can be folded and do not occupy space,

[0003] The existing flap barrier gate is prone to deformation and has poor stability when it encounters windy weather because the force acting on the door row is large. SUMMARY

[0004] The utility model mainly solves the technical problem to provide a door row for barrier gate and barrier gate, solves the problem that the existing flap barrier gate is prone to deformation and has poor stability when it encounters windy weather because the force acting on the door row is large.

[0005] To solve the above technical problems, one technical scheme of the utility model provides a door row for barrier gate, which comprises a main rod, a vice rod and a plurality of flip vertical rod devices. The main rod is in the shape of a long strip. The vice rod is in the shape of a long strip and is parallel to the main rod. The plurality of flip vertical rod devices are arranged between the main rod and the vice rod along the length direction of the main rod. Each flip vertical rod device comprises a main rod connecting assembly, a vice rod connecting assembly and a vertical rod assembly. The main rod connecting assembly is connected with the main rod. The vice rod connecting assembly is connected with the vice rod. The two ends of the vertical rod assembly are respectively connected with the vice rod connecting assembly and the main rod connecting assembly. The vice rod connecting assembly and the main rod connecting assembly are used to drive the vertical rod assembly to flip. The vertical rod assembly comprises at least two vertical rods, and there is a gap between the two adjacent vertical rods.

[0006] In some embodiments, the main rod connecting assembly comprises a main rod connecting seat, a first hinged seat, a main bevel gear, a vice bevel gear, a first rotating shaft and a first rotating connecting seat. The first hinged seat is in the shape of U. The first hinged seat comprises a first support part and two first extension parts which are perpendicular to the first support part. The top of the main rod connecting seat is connected with the main rod. The bottom of the main rod connecting seat is movably connected with the first extension part. The main bevel gear is fixedly connected with the bottom of the main rod connecting seat. The bottom of the main rod connecting seat and the main bevel gear are located between the two first extension parts. The central axis of the main bevel gear is perpendicular to the first extension part. The vice bevel gear is arranged on the side of the first support part close to the main bevel gear. The central axis of the vice bevel gear is parallel to the first extension part. The vice bevel gear is engaged with the main bevel gear. One end of the first rotating shaft is connected with the vice bevel gear, and the other end is fixed to the first rotating connecting seat. The first rotating connecting seat is fixedly connected with the vertical rod assembly.

[0007] In some embodiments, the main rod connecting seat comprises a first connecting portion and a first hinged portion in the vertical direction, the first connecting portion is plate-shaped, the first connecting portion is located at the top of the main rod connecting seat, the first connecting portion is connected with the main rod, the first hinged portion is located at the bottom of the main rod connecting seat, the main rack is located at one end of the first hinged portion, and the main rack is integrally formed with the first hinged portion.

[0008] In some embodiments, the auxiliary rod connecting assembly comprises an auxiliary rod connecting seat, a second hinged seat, a second rotating shaft and a second rotating connecting seat, the bottom of the auxiliary rod connecting seat is connected with the auxiliary rod, the top of the auxiliary rod connecting seat is movably connected with the second hinged seat, the second rotating shaft is rotatably connected with the second hinged seat, one end of the second rotating shaft away from the second hinged seat is fixed to the second rotating connecting seat, and the second rotating connecting seat is fixedly connected with the vertical rod assembly.

[0009] In some embodiments, the second hinged seat is U-shaped, the second hinged seat comprises a second supporting portion and two second extending portions perpendicular to the second supporting portion, the top of the auxiliary rod connecting seat is movably connected with the second extending portions, a through hole is arranged on the second supporting portion, the second rotating shaft comprises a top cap portion and a rotating shaft portion, the top cap portion is stopped at the lower end of the through hole, the rotating shaft portion passes through the through hole and is fixed to the second rotating connecting seat.

[0010] In some embodiments, the second hinged seat further comprises a protruding portion, the protruding portion is cylindrical, the protruding portion is arranged at one end of the second supporting portion close to the second rotating connecting seat, the protruding portion is enclosed outside the rotating shaft portion, the bottom of the second rotating connecting seat is sleeved outside the protruding portion, and the second rotating connecting seat and the vertical rod assembly can rotate relative to the protruding portion.

[0011] In some embodiments, the auxiliary rod connecting seat comprises a second connecting portion and a second hinged portion in the vertical direction, the second connecting portion is plate-shaped, the second connecting portion is located at the bottom of the auxiliary rod connecting seat, the second connecting portion is connected with the auxiliary rod, the second hinged portion is located at the top of the auxiliary rod connecting seat, and the auxiliary rod connecting seat is movably connected with the second hinged seat.

[0012] In some embodiments, the main rod connecting assembly is inserted into the bottom of the main rod, and the auxiliary rod connecting assembly is inserted into the top of the auxiliary rod.

[0013] In some embodiments, the vertical rod assembly further comprises a first fixing seat and a second fixing seat, the top of the first fixing seat is connected with the main rod connecting assembly, one end of the vertical rod is fixedly connected with the bottom of the first fixing seat, the other end of the vertical rod is fixedly connected with the top of the second fixing seat, and the bottom of the second fixing seat is fixedly connected with the auxiliary rod connecting assembly.

[0014] Based on the same inventive concept, the utility model also provides a barrier gate, which comprises a case and a door row as described above, and the case is connected with the door row.

[0015] The utility model discloses a beneficial effect is: the utility model discloses a gate for barrier gate and barrier gate, including main rod, vice rod and a plurality of turnover vertical rod device, main rod and vice rod are all long strip and mutually parallel, a plurality of turnover vertical rod device are set between main rod and vice rod along the length direction of main rod, every turnover vertical rod device includes main rod connecting assembly, vice rod connecting assembly and vertical rod subassembly, main rod connecting assembly is connected with main rod, vice rod connecting assembly is connected with vice rod, and the both ends of vertical rod subassembly are connected with vice rod connecting assembly and main rod connecting assembly respectively, vice rod connecting assembly and main rod connecting assembly are used for driving vertical rod subassembly turnover, and vertical rod subassembly includes at least two vertical rods, and there is gap between the two adjacent vertical rods. When encountering windy weather, the wind can pass through the gap between the vertical rod, and the resistance that the wind receives in the flowing process reduces, namely the force that the wind acts on the gate reduces, and the stability is better. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the structural schematic diagram of barrier gate of an embodiment of the utility model;

[0017] Figure 2 It is the structural schematic diagram of gate of an embodiment of the utility model;

[0018] Figure 3 It is the structural schematic diagram of turnover vertical rod device of an embodiment of the utility model;

[0019] Figure 4 It is the structural schematic diagram of main rod connecting assembly of an embodiment of the utility model;

[0020] Figure 5 It is the explosion structural schematic diagram of main rod connecting assembly of an embodiment of the utility model;

[0021] Figure 6 It is the structural schematic diagram of vice rod connecting assembly of an embodiment of the utility model;

[0022] Figure 7 It is the explosion structural schematic diagram of vice rod connecting assembly of an embodiment of the utility model;

[0023] Figure 8 It is the explosion structural schematic diagram of vertical rod subassembly of an embodiment of the utility model;

[0024] Figure 9 It is the structural schematic diagram of vice rod connecting seat of an embodiment of the utility model is inserted in vice rod. DETAILED DESCRIPTION

[0025] For the convenience of understanding the utility model, the utility model is explained in more detail below in combination with the drawings and specific embodiments. The drawings show the preferred embodiments of the utility model. However, the utility model can be realized in many different forms and is not limited to the embodiments described in the specification. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0026] It should be noted that, unless otherwise defined, all technical and scientific terms used in the specification have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terms used in the specification of the utility model are only for the purpose of describing specific embodiments and are not intended to limit the utility model. The term "and / or" used in the specification includes any and all combinations of one or more related listed items.

[0027] Figure 1 The embodiment of the utility model shows a barrier gate, including door row 10 and machine box 20, machine box 20 includes main machine box 201 and vice machine box 202, main machine box 201 and vice machine box 202 are connected with door row 10, through main machine box 201 and vice machine box 202 can cooperate together, drive door row 10 to lift or fall, thereby realizing the management of the access of vehicle.

[0028] Figures 2-9 The embodiment of the utility model shows a barrier gate, including door row 10 and machine box 20, machine box 20 includes main machine box 201 and vice machine box 202, main machine box 201 and vice machine box 202 are connected with door row 10, through main machine box 201 and vice machine box 202 can cooperate together, drive door row 10 to lift or fall, thereby realizing the management of the access of vehicle. Figure 1 And Figure 2 When machine box 20 drives door row 10 to lift, main rod 1 is subjected to upward force, main rod 1 moves upward, vice rod 2 generates downward force due to its own gravity, thereby driving turnover vertical rod device 3 to overturn along with the movement of main rod 1, the overturning angle is generally 90 °, along with the continuous lifting of door row 10, the spacing between main rod 1 and vice rod 2 continuously reduces, turnover vertical rod device 3 also gradually inclines from the original vertical state while overturning, the shape of whole door row 10 shrinks from the original rectangle to parallelogram, and the space occupied is smaller. Similarly, when machine box 20 drives door row 10 to fall, the shape of whole door row 10 expands from parallelogram to rectangle, turnover vertical rod device 3 reverts and keeps vertical state. During the process of lifting and falling, turnover vertical rod device 3 overturns synchronously, saves the time of lifting and falling, and facilitates vehicle passing.

[0029] Specifically, as Figure 3As shown, each turnover vertical rod device 3 comprises a main rod connecting assembly 31 connected with the main rod 1, a secondary rod connecting assembly 32 connected with the secondary rod 2, and a vertical rod assembly 33, two ends of which are connected with the main rod connecting assembly 31 and the secondary rod connecting assembly 32 respectively, the secondary rod connecting assembly 32 and the main rod connecting assembly 31 are used to drive the turnover of the vertical rod assembly 33, and the vertical rod assembly 33 comprises at least two vertical rods 331, and gaps 334 are arranged between adjacent two vertical rods 331.

[0030] In the utility model, the main rod connecting assembly 31 is connected with the main rod 1, the secondary rod connecting assembly 32 is connected with the secondary rod 2, and two ends of the vertical rod assembly 33 are connected with the main rod connecting assembly 31 and the secondary rod connecting assembly 32 respectively, when the door row 10 rises, the main rod connecting assembly 31 rotates, the vertical rod assembly 33 and the secondary rod connecting assembly 32 also rotate, thereby realizing the turnover of the vertical rod assembly 33, the turnover process is more stable, and the time of lifting and lowering the rod is saved; the vertical rod assembly 33 comprises at least two vertical rods 331, and gaps 334 are arranged between adjacent two vertical rods 331, when the door row 10 is in windy weather, wind can pass through the gaps 334 between the vertical rods 331, the wind resistance of the door row 10 in the flowing process is reduced, that is, the force of the wind on the door row 10 is reduced, deformation does not occur, and the stability is better.

[0031] It should be noted that the vertical rod assembly 33 can comprise two, three or more vertical rods 331, and in the embodiment, the vertical rod assembly 33 comprises two vertical rods 331.

[0032] In some embodiments, in combination with Figure 1 and Figure 2 As shown, the end of the door row 10 away from the cabinet 20 is also provided with a supporting and damping leg 14, the supporting and damping leg 14 can play a supporting and damping role when the door row 10 is lowered, so that the process of lowering the door row 10 is more stable.

[0033] In some embodiments, as Figure 4 and Figure 5As shown, the main rod connecting assembly 31 comprises a main rod connecting seat 311, a first hinged seat 312, a main bevel gear 313, a secondary bevel gear 314, a first rotating shaft 315 and a first rotating connecting seat 316. The first hinged seat 312 is in a U shape and comprises a first support part 3121 and two first extension parts 3122 which are perpendicular to the first support part 3121. The top of the main rod connecting seat 311 is connected with the main rod 1, and the bottom of the main rod connecting seat 311 is movably connected with the first extension parts 3122. The main bevel gear 313 is fixedly connected with the bottom of the main rod connecting seat 311, and the bottom of the main rod connecting seat 311 and the main bevel gear 313 are located between the two first extension parts 3122. The central axis of the main bevel gear 313 is perpendicular to the first extension parts 3122. The secondary bevel gear 314 is arranged on one side of the first support part 3121 close to the main bevel gear 313, and the central axis of the secondary bevel gear 314 is parallel to the first extension parts 3122. The secondary bevel gear 314 is engaged with the main bevel gear 313. One end of the first rotating shaft 315 is connected with the secondary bevel gear 314, and the other end is fixed to the first rotating connecting seat 316. The first rotating connecting seat 316 is fixedly connected with the vertical rod assembly 33. When the door row 10 is lifted up, the first hinged seat 312 swings relative to the main rod connecting seat 311, driving the vertical rod assembly 33 to continuously tilt from the vertical state to achieve the purpose of folding and shrinking. At the same time, with the swinging of the first hinged seat 312, the secondary bevel gear 314 also synchronously rotates relative to the main bevel gear 313. One end of the first rotating shaft 315 is connected with the secondary bevel gear 314, and the other end is fixed to the first rotating connecting seat 316. Therefore, the first rotating shaft 315 also synchronously rotates with the secondary bevel gear 314, thereby driving the first rotating connecting seat 316 to rotate. The first rotating connecting seat 316 is fixedly connected with the vertical rod assembly 33, thereby driving the vertical rod assembly 33 to overturn. By using the engagement mode of the main bevel gear 313 and the secondary bevel gear 314 to further drive the overturning of the vertical rod assembly 33, the frictional force received during the overturning process is smaller, and the overturning process is more stable and smooth.

[0034] In some embodiments, as shown in Figure 4 and Figure 5 As shown, the main rod connecting seat 311 comprises a first connecting part 3111 and a first hinged part 3112 in the vertical direction. The first connecting part 3111 is in a plate shape, and is located at the top of the main rod connecting seat 311 and connected with the main rod 1. The first hinged part 3112 is located at the bottom of the main rod connecting seat 311. The main bevel gear 313 is located at one end of the first hinged part 3112 and integrally formed with the first hinged part 3112. By using the plate-shaped first connecting part 3111, the connection effect is better when connected with the main rod 1. The first hinged part 3112 is integrally formed with the main bevel gear 313, which can improve the stability of the overall structure. When the main bevel gear 313 and the secondary bevel gear 314 rotate relative to each other, the stress is more uniform and the damage is less likely to occur. Moreover, the integrally formed structure is more convenient for processing and installation.

[0035] In some embodiments, combined with Figure 6 and Figure 7 As shown, the secondary rod connecting assembly 32 includes a secondary rod connecting seat 321, a second hinge seat 322, a second rotating shaft 323, and a second rotating connecting seat 324. The bottom of the secondary rod connecting seat 321 is connected to the secondary rod 2, and the top of the secondary rod connecting seat 321 is movably connected to the second hinge seat 322. The second rotating shaft 323 is rotatably connected to the second hinge seat 322, and one end of the second rotating shaft 323 away from the second hinge seat 322 is fixed to the second rotating connecting seat 324. The second rotating connecting seat 324 is fixedly connected to the vertical rod assembly 33. Figure 2 and Figure 6 As shown, when the door panel 10 is raised, the first hinge seat 312 swings, and the second hinge seat 322 swings synchronously. The vertical rod assembly 33 tilts, and the distance between the main rod 1 and the auxiliary rod 2 continuously decreases, achieving a folding and retracting effect. Simultaneously, the vertical rod assembly 33 rotates with the first rotating connecting seat 316, and the force generated by the rotation is transmitted to the second rotating connecting seat 324. The second rotating connecting seat 324 is connected to the second rotating shaft 323, and the second rotating connecting seat 324 and the second rotating shaft 323 rotate together relative to the second hinge seat 322. The second rotating connecting seat 324 assists the first rotating connecting seat 316 in jointly driving the vertical rod assembly 33 to flip, making the flipping process more stable.

[0036] In some embodiments, combined with Figure 6 and Figure 7 As shown, the second hinge seat 322 is U-shaped and includes a second support portion 3221 and two second extension portions 3222 perpendicular to the second support portion 3221. The top of the auxiliary rod connecting seat 321 is movably connected to the second extension portions 3222. A through hole 3224 is provided on the second support portion 3221. The second rotating shaft 323 includes a top cap portion 3231 and a rotating shaft portion 3232. The top cap portion 3231 stops at the lower end of the through hole 3224, and the rotating shaft portion 3232 passes through the through hole 3224 and is fixed to the second rotating connecting seat 324. By stopping the top cap portion 3231 of the second rotating shaft 323 at the lower end of the through hole 3224, and allowing the rotating shaft portion 3232 to pass through the through hole 3224 and be fixed to the second rotating connecting seat 324, the top cap portion 3231 can limit the rotation of the second rotating connecting seat 324 when the second rotating shaft 323 rotates, making the rotation process more stable.

[0037] In some embodiments, such as Figure 7As shown, the second hinge seat 322 further comprises a protrusion 3223, which is cylindrical, and is arranged at one end of the second support part 3221 close to the second rotating connecting seat 324, and surrounds the outside of the rotating shaft part 3232. The bottom of the second rotating connecting seat 324 is also sleeve-shaped, and is sleeved on the periphery of the protrusion 3223. The second rotating connecting seat 324 and the vertical rod assembly 33 can rotate relative to the protrusion 3223. When the vertical rod assembly 33 is flipped, the bottom of the second connecting part 3211 is synchronously rotated relative to the protrusion 3223, thereby improving the stability during the flipping process.

[0038] In some embodiments, in combination with Figure 6 and Figure 7 As shown, the sub-rod connecting seat 321 comprises a second connecting part 3211 and a second hinge part 3212 in the vertical direction. The second connecting part 3211 is plate-shaped, and is arranged at the bottom of the sub-rod connecting seat 321 and connected with the sub-rod 2. The second hinge part 3212 is arranged at the top of the sub-rod connecting seat 321, and the sub-rod connecting seat 321 is movably connected with the second hinge seat 322. By using the plate-shaped second connecting part 3211, the connection effect is better when connected with the sub-rod 2. Moreover, the second connecting part 3211 is arranged at the bottom of the sub-rod connecting seat 321, and the second hinge part 3212 is arranged at the top of the sub-rod connecting seat 321. When the second hinge part 3212 swings relative to the second hinge seat 322, the stress is more uniform, and the swinging process is more stable.

[0039] In some embodiments, the main-rod connecting assembly 31 is inserted at the bottom of the main rod 1, and the sub-rod connecting assembly 32 is inserted at the top of the sub-rod 2. Specifically, in combination with Figure 6 and Figure 9 As shown, taking the sub-rod 2 and the sub-rod connecting assembly 32 as an example, the sub-rod 2 is provided with a slot 21, which is arranged along the length direction of the sub-rod 2. Each sub-rod connecting assembly 32 comprises a sub-rod connecting seat 321, and the second connecting part 3211 of the sub-rod connecting seat 321 is plate-shaped and can be inserted in the slot 21, which is convenient for disassembly and installation. The insertion mode of the main rod 1 and the main-rod connecting assembly 31 is the same as above, and will not be described here again.

[0040] When the flipping vertical rod device 3 is installed, the main-rod connecting assembly 31 can be directly inserted at the bottom of the main rod 1, and then the sub-rod connecting assembly 32 is inserted at the top of the sub-rod 2, and then the vertical rod assembly 33 is installed between the main-rod connecting assembly 31 and the sub-rod connecting assembly 32, which is more convenient and fast.

[0041] In some embodiments, in combination with Figure 3 and Figure 8As shown, the vertical rod assembly 33 further comprises a first fixing base 332 and a second fixing base 333, the top of the first fixing base 332 is connected with the main rod connecting assembly 31, one end of the vertical rod 331 is fixedly connected with the bottom of the first fixing base 332, the other end is fixedly connected with the top of the second fixing base 333, and the bottom of the second fixing base 333 is fixedly connected with the auxiliary rod connecting assembly 32. By fixing the two ends of the vertical rod 331 with the first fixing base 332 and the second fixing base 333 respectively, and then connecting the first fixing base 332 and the second fixing base 333 with the main rod connecting assembly 31 and the auxiliary rod connecting assembly 32 respectively, the stability of the overall structure is improved.

[0042] In some embodiments, the first fixing base 332 is provided with a first accommodating groove (not shown in the figure), the second fixing base 333 is correspondingly provided with a second accommodating groove 3331, and the two ends of the vertical rod 331 are fixed in the first accommodating groove and the second accommodating groove 3331 respectively. The first accommodating groove and the second accommodating groove 3331 can play a positioning role, further improving the reliability of the fixed connection.

[0043] Therefore, the utility model discloses a gate row and barrier gate for barrier gate, including main rod, auxiliary rod and a plurality of turnover vertical rod devices, and the main rod and auxiliary rod are all long strip and parallel, and a plurality of turnover vertical rod devices are set between the main rod and auxiliary rod along the length direction of the main rod, and each turnover vertical rod device includes main rod connecting assembly, auxiliary rod connecting assembly and vertical rod assembly, and the main rod connecting assembly is connected with the main rod, and the auxiliary rod connecting assembly is connected with the auxiliary rod, and the both ends of the vertical rod assembly are connected with the auxiliary rod connecting assembly and main rod connecting assembly respectively, and the auxiliary rod connecting assembly and main rod connecting assembly are used to drive the turnover of vertical rod assembly, and the vertical rod assembly includes at least two vertical rods, and there is a gap between the adjacent two vertical rods. When encountering windy weather, the wind can pass through the gap between the vertical rods, the resistance that the wind receives in the flowing process is reduced, that is, the force of the wind on the gate row is reduced, and deformation does not occur, and the stability is better.

[0044] The above is only the embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation using the utility model specification and drawing contents, or direct or indirect application in other related technical fields, are all included in the patent protection range of the utility model.

Claims

1. A gate array for a barrier, characterized in that, The utility model relates to a kind of vertical turning device, including: Main rod, the main rod is long strip shape; Sub rod, the sub rod is long strip shape and parallel with the main rod; Multiple turnover vertical rod devices, multiple the turnover vertical rod devices are arranged between the main rod and the sub rod along the length direction of the main rod;Each turnover vertical rod device includes main rod connecting component, sub rod connecting component and vertical rod component, the main rod connecting component is connected with the main rod, the sub rod connecting component is connected with the sub rod, two ends of the vertical rod component are connected with the sub rod connecting component and the main rod connecting component respectively, the sub rod connecting component and the main rod connecting component are used to drive the vertical rod component to overturn, the vertical rod component includes at least two vertical rods, and gap is formed between adjacent two vertical rods.

2. A gate array for a barrier gate according to claim 1, characterised in that, The main rod connecting component includes main rod connecting seat, first hinged seat, main umbrella tooth, sub umbrella tooth, first rotating shaft and first rotating connecting seat, the first hinged seat is U-shaped, the first hinged seat includes first support part and two first extension parts perpendicular to the first support part, the top of the main rod connecting seat is connected with the main rod, the bottom of the main rod connecting seat is movably connected with the first extension part, the main umbrella tooth is fixedly connected with the bottom of the main rod connecting seat, the bottom of the main rod connecting seat and the main umbrella tooth are located between two first extension parts, the central axis of the main umbrella tooth is perpendicular to the first extension part, the sub umbrella tooth is arranged on the side of the first support part close to the main umbrella tooth, the central axis of the sub umbrella tooth is parallel to the first extension part, the sub umbrella tooth is engaged with the main umbrella tooth, one end of the first rotating shaft is connected with the sub umbrella tooth, and the other end is fixed to the first rotating connecting seat, and the first rotating connecting seat is fixedly connected with the vertical rod component.

3. A door row for a barrier gate according to claim 2, characterized in that The main rod connecting seat includes first connecting part and first hinged part in vertical direction, the first connecting part is plate-shaped, the first connecting part is located at the top of the main rod connecting seat, the first connecting part is connected with the main rod, the first hinged part is located at the bottom of the main rod connecting seat, and the main umbrella tooth is located at one end of the first hinged part and is integrally formed with the first hinged part.

4. The gate array for a barrier gate according to claim 1, wherein The sub rod connecting component includes sub rod connecting seat, second hinged seat, second rotating shaft and second rotating connecting seat, the bottom of the sub rod connecting seat is connected with the sub rod, the top of the sub rod connecting seat is movably connected with the second hinged seat, the second rotating shaft is rotatably connected with the second hinged seat, one end of the second rotating shaft away from the second hinged seat is fixed to the second rotating connecting seat, and the second rotating connecting seat is fixedly connected with the vertical rod component.

5. A door row for a barrier gate according to claim 4, characterized in that The second hinged seat is U-shaped, the second hinged seat includes second support part and two second extension parts perpendicular to the second support part, the top of the sub rod connecting seat is movably connected with the second extension part, a through hole is formed in the second support part, the second rotating shaft includes top cap part and rotating shaft part, the top cap part is stopped at the lower end of the through hole, the rotating shaft part passes through the through hole and is fixed to the second rotating connecting seat.

6. A door row for a barrier gate according to claim 5, characterized in that The second hinge seat further comprises a protrusion, which is cylindrical, and is arranged at one end of the second support part close to the second rotary connecting seat, and surrounds the outside of the rotating shaft part, and the bottom of the second rotary connecting seat is sleeved on the periphery of the protrusion, and the second rotary connecting seat and the vertical rod assembly can rotate relative to the protrusion.

7. A door row for a barrier gate according to claim 6, characterized in that The auxiliary rod connecting seat comprises a second connecting part and a second hinge part in the vertical direction, the second connecting part is plate-shaped, and is arranged at the bottom of the auxiliary rod connecting seat and connected with the auxiliary rod, and the second hinge part is arranged at the top of the auxiliary rod connecting seat and movably connected with the second hinge seat.

8. The gate array for a barrier gate according to claim 1, wherein The main rod connecting assembly is inserted into the bottom of the main rod, and the auxiliary rod connecting assembly is inserted into the top of the auxiliary rod.

9. A door array for a barrier gate according to claim 1, wherein The vertical rod assembly further comprises a first fixing seat and a second fixing seat, the top of the first fixing seat is connected with the main rod connecting assembly, one end of the vertical rod is fixedly connected with the bottom of the first fixing seat, and the other end is fixedly connected with the top of the second fixing seat, and the bottom of the second fixing seat is fixedly connected with the auxiliary rod connecting assembly.

10. A barrier gate characterized by, The door row as claimed in any one of claims 1-9 is connected with a cabinet.