Passenger glass channel with automatic door

The automated passenger glass channel integrates detection and voice notification systems to address the lack of smart management in existing glass channels, ensuring efficient passenger flow and emergency response.

CN223104233UActive Publication Date: 2025-07-15FOSHAN DUNBIAO PROTECTION EQUIP TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422394323.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-15
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The existing glass channels have insufficient improvements in intelligent management and personnel supervision, and lack intelligent detection and voice prompt functions.

Method used

An automatic door passenger glass channel is designed, equipped with personnel detection and voice notification functions, and the opening and closing of the automatic double door is controlled through induction detectors and electric drive components to realize the management and prompts of passengers.

Benefits of technology

It realizes intelligent management and prompts for passengers, improves the efficiency of personnel detection, and ensures a safe and smooth passage experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223104233U_ABST
    Figure CN223104233U_ABST
Patent Text Reader

Abstract

The utility model provides an automatic door passenger glass channel, and relates to the field of glass channel design, a wall surface A, a wall surface C, a wall surface B and a wall surface D are sequentially connected to form a surrounding space, and a ceiling top surface covers the surrounding space to form a closed space inside; the wall face A comprises first fixing bases located on the two sides, and a first automatic double door capable of moving in an opening and closing mode is connected between the first fixing bases on the two sides in a sliding mode. The wall face B comprises second fixing bases located on the two sides, and a second automatic double door capable of being opened and closed is slidably connected between the second fixing bases on the two sides. A broadcasting device and a first induction detector used for detecting that someone stays in the enclosed space are arranged in the enclosed space. The beneficial effects of the utility model are that through the arrangement of the broadcaster and the inductive detector, the functions of personnel detection and voice notification prompt are achieved, so as to better manage and prompt incoming passengers; and the surrounding surfaces are provided with hollow tempered glass, so that the whole structure is firm and bright.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of glass passage design, in particular to an automatic door passenger glass passage. Background Art

[0002] Glass passages play an important role in modern transportation and building facilities. They are especially applied in security inspection sites of some tourist attractions, airports, subway stations and other public transportation places, or in factory visits. The transparent glass in the passage serves as an enclosing wall, which not only provides a broad view, but also protects passengers from external harm and has no impact on the internal environment of the visited place.

[0003] Currently, people mainly focus on the improvement of glass passages in terms of safety. Chinese Patent Publication No. CN207660333U discloses an isolated visit passage for a production workshop and a production workshop. The isolated visit passage for the production workshop includes a passage body and transparent windows provided in at least some areas of the passage body. The passage body is fixed to columns, walls, brackets or roofs in the production workshop. The air in the passage body is isolated from the air in the area to be visited in the production workshop. The area to be visited in the production workshop can be viewed through the transparent windows from inside the passage body. Both the passage body and the transparent windows are made of fireproof materials. This design solves the technical problem that the prior art cannot meet the requirements of the workshop for cleanliness and fire safety at the same time. However, in fact, with the progress of technology, the improvement of the materials and design of glass visit passages has basically met the safety requirements. People hope to have more intelligent visit passages to cooperate with the management and supervision of personnel, but there are few improvements in this aspect of technology at present.

[0004] Based on this, the utility model discloses an automatic door passenger glass passage with detection and voice notification functions to meet the needs of society. Content of the Utility Model

[0005] The utility model overcomes the shortcomings in the prior art and provides an automatic door passenger glass passage. By setting relevant personnel detection and voice notification functions, it can better manage and prompt passengers, and has a clever structure.

[0006] In order to solve the above technical problems, the utility model is realized through the following technical solutions:

[0007] An automatic door passenger glass passage, comprising symmetrically arranged A wall surface and B wall surface, symmetrically arranged C wall surface and D wall surface, and a ceiling top surface. The A wall surface, C wall surface, B wall surface, and D wall surface are sequentially connected to form an enclosed space, and the ceiling top surface covers the enclosed space to form a closed space inside. The A wall surface includes first fixed bases located on both sides, and a first automatic double door that can open and close is slidably connected between the two first fixed bases on both sides. The B wall surface includes second fixed bases located on both sides, and a second automatic double door that can open and close is slidably connected between the two second fixed bases on both sides. The C wall surface and D wall surface are symmetrically arranged with respect to the central connection line of the first automatic double door and the second automatic double door. A broadcaster and a first induction detector for detecting someone staying in the enclosed space are arranged in the closed space.

[0008] Furthermore, the A wall surface includes a first mounting plate located at the top. The first automatic double door is connected to a first electric driving component, and a second induction detector that is signal-connected to the first electric driving component is arranged on the first mounting plate. The second induction detector is located above the center of the first automatic double door.

[0009] Furthermore, the first electric driving component is signal-connected to a time delay device, and the time delay device is signal-connected to the broadcaster.

[0010] Furthermore, the second automatic double door is connected to a second electric driving component, and the second electric driving component is signal-connected to the first electric driving component.

[0011] Furthermore, emergency switches for controlling the operation of the first electric driving component and the second electric driving component are arranged on both the first fixed base and the second fixed base, so that the first electric driving component and the second electric driving component can simultaneously control the first automatic double door and the second automatic double door to open at the same time.

[0012] Furthermore, a remote controller is also included, and the remote controller is signal-connected to the first electric driving component and the second electric driving component.

[0013] Furthermore, the A wall surface, B wall surface, C wall surface, D wall surface, and the ceiling top surface are all made of hollow tempered glass.

[0014] Furthermore, the ceiling top surface includes galvanized steel pipe frames, and the hollow tempered glass is fixed on the galvanized steel pipe frames.

[0015] Furthermore, the A wall surface, B wall surface, C wall surface, and D wall surface have the same height, and the height is between 2600 mm and 3000 mm.

[0016] Furthermore, the length of the ceiling top surface is between 2800 mm and 3200 mm, and the width is between 2200 mm and 2600 mm.

[0017] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0018] The utility model includes a glass-channel-type enclosed space composed of a wall surface A, a wall surface C, a wall surface B, a wall surface D, and a ceiling top surface. By providing a broadcaster and an induction detector, functions of personnel detection and voice notification and prompt are achieved, so as to better manage and prompt the entering passengers; and the surrounding surfaces all have hollow toughened glass, and the overall structure is firm and bright. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The drawings are used to provide a further understanding of the utility model, and are used together with the embodiments of the utility model to explain the utility model, and do not constitute a limitation to the utility model. In the drawings:

[0020] Figure 1 is a schematic diagram of the top view of the wall surface A, the wall surface C, the wall surface B, and the wall surface D of the utility model;

[0021] Figure 2 is a schematic diagram of the wall surface A of the utility model;

[0022] Figure 3 is a schematic diagram of the wall surface B of the utility model;

[0023] Figure 4 is a top view of the ceiling top surface of the utility model.

[0024] In the figure: 1, wall surface A; 101, first fixed base; 102, first automatic double-door; 103, first mounting plate; 2, wall surface B; 201, second fixed base; 202, second automatic double-door; 3, wall surface C; 4, wall surface D; 5, ceiling top surface; 501, galvanized steel pipe rack; 6, hollow toughened glass. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0025] The following is a description of the preferred embodiments of the utility model with reference to the drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the utility model, and are not used to limit the utility model.

[0026] Such as Figures 1 to 4As shown in the figure, an automatic door passenger glass passage includes symmetrically arranged A wall surface 1 and B wall surface 2, symmetrically arranged C wall surface 3 and D wall surface 4, and a ceiling top surface 5. Among them, the A wall surface 1, C wall surface 3, B wall surface 2, and D wall surface 4 are connected in sequence to form an enclosed space, which is box-shaped. The ceiling top surface 5 covers the enclosed space to form a closed space inside; the A wall surface 1 and B wall surface 2 are on opposite sides. The A wall surface 1 has a first automatic double door 102, and the B wall surface 2 has a second automatic double door 202. Tourists enter the closed space through the first automatic double door 102 and then exit through the second automatic double door 202.

[0027] Specifically, the A wall surface 1 includes first fixed bases 101 on both sides, and the first automatic double door 102 is slidably connected between the first fixed bases 101 on both sides; the B wall surface 2 includes second fixed bases 201 on both sides, and the second automatic double door 202 is slidably connected between the second fixed bases 201 on both sides; in this embodiment, the structures and sizes of the A wall surface 1 and B wall surface 2 are the same. Figure 1 It can be seen that the C wall surface 3 and D wall surface 4 are symmetrically arranged with respect to the central connection line of both the first automatic double door 102 and the second automatic double door 202, that is, the box formed by enclosing the A wall surface 1, C wall surface 3, B wall surface 2, and D wall surface 4 is structurally symmetric.

[0028] In addition, the A wall surface 1, B wall surface 2, C wall surface 3, and D wall surface 4 have the same height, and it is between 2600 mm and 3000 mm. In this embodiment, the height is taken as 2800 mm; the length of the ceiling top surface 5 is between 2800 mm and 3200 mm, and the width is between 2200 mm and 2600 mm. In this embodiment, the length is 3000 mm and the width is 2400 mm; because it is found in actual applications that such specifications of length, width, and height meet the use in most occasions, and it will not be too high to cause insufficient bearing capacity, nor too low to affect the movement of pedestrians.

[0029] The A wall surface 1, B wall surface 2, C wall surface 3, D wall surface 4, and the ceiling top surface 5 all have hollow tempered glass 6. The hollow tempered glass 6 has a strong material, which not only ensures good safety, but also makes the enclosed glass passage relatively bright.

[0030] The ceiling top surface 5 includes a galvanized steel pipe frame 501. The galvanized steel pipe structure is strong and will not rust. The hollow tempered glass 6 is fixed on the galvanized steel pipe frame 501.

[0031] Wall A 1 includes a first mounting plate 103 at the top. A second induction detector that is signal-connected to the first electric drive component is provided on the first mounting plate 103. The second induction detector can be a microwave sensor or an infrared sensor. The first automatic double-door 102 is connected to a first electric drive component. The first electric drive component is used to drive the opening or closing of the first automatic double-door 102. The first electric drive component is a prior art, mainly composed of components such as a power motor, a door leaf hanger wheel system, and a synchronous belt, so as to realize the opening or closing of the first automatic double-door 102. This is the prior art and will not be elaborated here. The signal connection between the second induction detector and the first electric drive component can be a wire connection or a wireless connection, which is not limited here. When the second induction detector senses someone approaching, it will transmit a signal to the first electric drive component, and the first electric drive component will control the opening of the first automatic double-door 102.

[0032] The second induction detector is located above the center of the first automatic double-door 102, so as to maintain the same distance from both the left and right sides of Wall A 1, which is beneficial to a more balanced monitoring range.

[0033] A broadcaster and a first induction detector for detecting someone staying in the enclosed space are provided inside the enclosed space. The first induction detector is also a microwave sensor or an infrared sensor. When the first induction detector detects someone staying inside the enclosed space, it will output an instruction to the broadcaster, and the broadcaster will emit a voice or a prompt sound to remind pedestrians to move faster and leave to avoid crowding inside the enclosed space.

[0034] Among them, the first electric drive component is signal-connected to a time delay device, and the time delay device is signal-connected to the broadcaster. The intention is that when the first electric drive component closes the first automatic double-door 102, it indicates that pedestrians have entered the enclosed space through the first automatic double-door 102 at this time. The first electric drive component will send a signal to the time delay device, setting the time delay device to delay for about 3 to 5 seconds, and then the time delay device will send a signal to the broadcaster to make the broadcaster broadcast a sound to urge pedestrians. In practical applications, a main controller serving as a command center will be provided. Through a large-scale integrated circuit with an instruction program compiled inside the main controller, corresponding instructions are issued. The signal transmission relationship between the first electric drive component, the time delay device, and the broadcaster is controlled by being connected to the main controller. This is already a very mature technical means at present and will not be elaborated here.

[0035] The second automatic double-door 202 is connected to a second electric drive component. Similarly, the second electric drive component controls the opening and closing of the second automatic double-door 202, and the composition of the second electric drive component is the same as that of the first electric drive component. The second electric drive component is signal-connected to the first electric drive component, and the transmission is also achieved through the internal instruction program of the main controller. When the second electric drive component controls the second automatic double-door 202 to close, the second electric drive component transmits relevant signals back to the first electric drive component, and then the first electric drive component will control the first automatic double-door 102 to open to allow the next batch of tourists to enter the enclosed space, achieving the effect of diverting the flow of people.

[0036] In order to cope with the occurrence of emergencies, emergency switches for controlling the operation of the first electric drive component and the second electric drive component are provided on both the first fixed base 101 and the second fixed base 201. The emergency switches are electrically connected to the first electric drive component and the second electric drive component. Press the emergency switch to make the first electric drive component and the second electric drive component control the first automatic double-door 102 and the second automatic double-door 202 to open simultaneously, so as to facilitate the emergency evacuation of tourists in the enclosed space.

[0037] It also includes a remote controller, which is signal-connected to the first electric drive component and the second electric drive component. The main controller is provided with a receiving module for receiving the instructions issued by the remote controller. When the receiving module receives the instructions of the remote controller, the main controller outputs signals to the first electric drive component and the second electric drive component to synchronously open the first automatic double-door 102 and the second automatic double-door 202 simultaneously to allow the tourists to evacuate emergently.

[0038] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. However, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An automatic door passenger glass passage, characterized in that, It includes symmetrically arranged A wall surface (1) and B wall surface (2), symmetrically arranged C wall surface (3) and D wall surface (4), and a ceiling top surface (5). The A wall surface (1), C wall surface (3), B wall surface (2), and D wall surface (4) are connected in sequence to form an enclosed space, and the ceiling top surface (5) covers the enclosed space to form a closed space inside; The A wall surface (1) includes first fixed bases (101) located on both sides, and a first automatic double-door (102) that can open and close is slidably connected between the first fixed bases (101) on both sides; The B wall surface (2) includes second fixed bases (201) located on both sides, and a second automatic double-door (202) that can open and close is slidably connected between the second fixed bases (201) on both sides; The C wall surface (3) and the D wall surface (4) are symmetrically arranged with respect to the center line connecting the first automatic double-door (102) and the second automatic double-door (202); A broadcaster and a first induction detector for detecting whether someone stays in the enclosed space are arranged in the closed space.

2. The automatic door passenger glass passage according to claim 1, characterized in that, The A wall surface (1) includes a first mounting plate (103) located at the top. The first automatic double-door (102) is connected to a first electric drive component. A second induction detector that is signal-connected to the first electric drive component is arranged on the first mounting plate (103), and the second induction detector is located above the center of the first automatic double-door (102).

3. The automatic door passenger glass passage according to claim 2, characterized in that, The first electric drive component is signal-connected to a time delay device, and the time delay device is signal-connected to the broadcaster.

4. The automatic door passenger glass passage according to claim 3, characterized in that, The second automatic double-door (202) is connected to a second electric drive component, and the second electric drive component is signal-connected to the first electric drive component.

5. The automatic door passenger glass passage according to claim 4, characterized in that, Emergency switches for controlling the operation of the first electric drive component and the second electric drive component are arranged on both the first fixed base (101) and the second fixed base (201), so that the first electric drive component and the second electric drive component simultaneously control the first automatic double-door (102) and the second automatic double-door (202) to open simultaneously.

6. The automatic door passenger glass passage according to claim 5, wherein It also includes a remote control, and the remote control is signal-connected to the first electric drive component and the second electric drive component.

7. The automatic door passenger glass passage according to claim 1, characterized in that, The A wall surface (1), B wall surface (2), C wall surface (3), D wall surface (4), and the ceiling top surface (5) all have hollow tempered glass (6).

8. The automatic door passenger glass passage according to claim 7, characterized in that, The ceiling top surface (5) includes a galvanized steel pipe frame (501), and the hollow tempered glass (6) is fixed on the galvanized steel pipe frame (501).

9. The automatic door passenger glass passage according to claim 1, characterized in that, The A wall surface (1), B wall surface (2), C wall surface (3), and D wall surface (4) have the same height and are between 2600 mm and 3000 mm.

10. The automatic door passenger glass passage according to claim 9, characterized in that, The length of the ceiling top surface (5) is between 2800 mm and 3200 mm, and the width is between 2200 mm and 2600 mm.

Citation Information

Patent Citations

  • Passageway and workshop are visited with isolated formula to workshop

    CN207660333U