Vertical glass sheet arranging cage and transmission mechanism

By designing a glass vertical sheet cage transmission mechanism and using components such as transmission motors and lifting members, the problems of slow transportation speed and poor safety of horizontal sheet cages are solved, and efficient, safe and energy-saving conveying of glass sheets is achieved.

CN223225311UActive Publication Date: 2025-08-15袁兴祥
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Patent Information

Application Number
CN202421638419.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-11
Publication Date
2025-08-15
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

The existing horizontal sheet cages have problems such as slow access speed, high energy consumption and high risk when transporting glass sheets, which can easily lead to safety accidents.

Method used

The glass vertical sheet cage transmission mechanism is adopted, including underframe welding, external shell, storage cage frame, walking components and transmission components. The transmission motor, transmission roller, lifting members and air pressure sensor are used to achieve smooth, safe and energy-saving conveying of the glass sheet.

Benefits of technology

It improves the access speed of glass sheets, reduces energy consumption, and significantly reduces the occurrence of safety accidents.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass storage, in particular to a vertical glass sheet arranging cage and transmission mechanism, which comprises a welding underframe, an external cover shell, a sheet storing cage frame, a walking assembly and a transmission assembly, and the transmission assembly comprises a moving frame, a transmission motor, transmission rollers, a first transmission gear, a second transmission gear and a lifting component. The moving frame is installed on the underframe welding part, the conveying motor is installed on the moving frame, the conveying roller is installed on the moving frame, the first conveying gear is fixedly connected with an output shaft of the conveying motor, the second conveying gear is installed on the conveying roller, and the lifting component is installed on the moving frame, so that the sheet storage cage frame moves to a designated position. The conveying roller is flush with the bottom end of the glass sheet through the lifting component, then the conveying motor is started, the first conveying gear drives the second conveying gear to rotate, the conveying roller rotates, the glass sheet is placed on the conveying roller, and the glass sheet is stored on the sheet storage cage frame, so that the glass sheet is safely conveyed, and safety accidents are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass storage, in particular to a vertical glass sheet sorting cage and a transmission mechanism. Background Art

[0002] Glass sheets are a type of glass product, typically rectangular or square, with thicknesses ranging from 1mm to 10mm. Custom sizes and shapes can be customized based on specific needs. After optimizing the cut glass sheets, the process of pairing and finding each piece manually is inefficient, costly, and prone to scratches. Clear and colored glass sheets are also optimized and cut in different orders, leading to confusion in unloading, occupying space and glass racks, and making it even more difficult to find the required glass sheets.

[0003] Currently, horizontal glass sorting cages are used to transport glass sheets. However, during use, the entire cage needs to be lifted up and moved vertically. The storage and retrieval speed is slow, and it has high energy consumption and high risks, which can easily lead to safety accidents. Utility Model Content

[0004] The purpose of the utility model is to provide a vertical glass sorting cage and a transmission mechanism, which solves the problem that the glass sheets are currently transported using a horizontal sorting cage. During use, the horizontal sorting cage needs to lift the entire cage and move it vertically up and down, resulting in slow access speed, high energy consumption, high risk, and easy occurrence of safety accidents.

[0005] To achieve the above-mentioned purpose, the utility model provides a glass vertical film sorting cage transmission mechanism, including a base frame weld, an external cover, a film storage cage frame, a walking assembly and a transmission assembly, the external cover is fixedly mounted on the base frame weld, the film storage cage frame is mounted on the base frame weld through the walking assembly, the transmission assembly includes a movable frame, a transmission motor, a transmission roller, a first transmission gear, a second transmission gear and a lifting component, the movable frame is mounted on the base frame weld and is located on the side of the base frame weld close to the external cover, the transmission motor is fixedly mounted on the movable frame, the transmission roller is mounted on the movable frame, the transmission roller is rotatably connected to the movable frame, the first transmission gear is fixedly connected to the output shaft of the transmission motor, the second transmission gear is mounted on the transmission roller, the first transmission gear is meshed with the second transmission gear, and the lifting component is mounted on the movable frame.

[0006] Wherein, the transmission component further includes an air pressure sensor, and the air pressure sensor is fixedly mounted on the movable frame.

[0007] Among them, the lifting component includes a lifting cylinder, a pushing shaft and a lifting guide shaft. The lifting cylinder is fixedly mounted on the base frame; one end of the pushing shaft is fixedly connected to the output shaft of the lifting cylinder, and the other end of the pushing shaft is fixedly connected to the movable frame; the lifting guide shaft is fixedly mounted on the movable frame.

[0008] Among them, the walking assembly includes guide rails, bevel racks, roller boxes, protective cover shells and driving components. There are two guide rails, and the two guide rails are respectively mounted on the base frame weld. Each guide rail is mounted with the bevel rack, and the bevel rack is fixedly connected to the guide rail, and the bevel rack is fixedly connected to the base frame weld. There are four roller boxes, and the four roller boxes are respectively mounted on the film storage cage frame, and the roller boxes are slidably connected to the guide rails. The protective cover shell is fixedly mounted on the film storage cage frame; the driving component is mounted on the film storage cage frame.

[0009] Wherein, the driving component includes a reducer, a coupling, a commutator and a helical gear. The reducer is fixedly mounted on the film storage cage frame and is located on the side of the film storage cage frame close to the protective cover shell; there are two couplings, and the two couplings are respectively mounted on the reducer, each coupling is mounted with the commutator, each commutator is mounted with the helical gear, and the helical gear is engaged with the helical rack.

[0010] The utility model also provides a glass vertical sheet sorting cage, which adopts the above-mentioned glass vertical sheet sorting cage transmission mechanism for transportation, including a cage body, a digital mark plate and a photoelectric limit bracket, wherein the digital mark plate is fixedly installed on the cage body; the photoelectric limit bracket is fixedly installed on the cage body.

[0011] The utility model discloses a vertical glass sheet sorting cage and transmission mechanism, the movable frame is fixedly mounted on the base frame welding, the transmission motor is fixedly mounted on the movable frame, the transmission roller is mounted on the movable frame, the conveyor belt is mounted on the transmission roller, the first transmission gear is fixedly mounted on the output shaft of the transmission motor, the second transmission gear is mounted on the transmission roller, the first transmission gear is meshed with the second transmission gear, when in use, the frame of the glass storage cage is moved to the position of the glass sheet to be transmitted, the lifting cylinder is started to drive the driving shaft to push the movable frame to move upward so that the transmission roller is flush with the bottom end of the glass sheet, and then the transmission motor is started to rotate the first transmission gear, drive the second transmission gear to rotate, and cause the transmission roller to rotate on the movable frame, place the glass sheet on the transmission roller, and transport the glass sheet, and at the same time, the air pressure sensor is used to detect whether there is air pressure to determine whether there is a glass sheet, so that the glass sheet entry and exit sensing detection is more accurate, and the glass sheet is stored on the frame of the glass storage cage, thereby more stable, safe, and energy-saving transportation of the glass sheet, reducing the occurrence of safety accidents. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.

[0013] Figure 1 It is a schematic diagram of the overall structure of the glass vertical sheet sorting cage and the transmission mechanism of the first embodiment of the present utility model.

[0014] Figure 2 It is a schematic diagram of the installation structure of the mobile rack of the first embodiment of the present utility model.

[0015] Figure 3 This utility model Figure 2 Enlarged view of point A.

[0016] Figure 4 It is a schematic diagram of the installation structure of the protective cover shell of the second embodiment of the present utility model.

[0017] Figure 5 This utility model Figure 4 Enlarged view of point B.

[0018] Figure 6 It is a schematic diagram of the installation structure of the reducer of the second embodiment of the present utility model.

[0019] Figure 7 It is a structural diagram of a vertical glass sheet sorting cage of the present invention.

[0020] In the figure: 101-base welding, 102-external cover, 103-film storage cage frame, 104-movable frame, 105-transmission motor, 106-transmission roller, 107-first transmission gear, 108-second transmission gear, 109-air pressure sensor, 110-lifting cylinder, 111-propelling shaft, 112-lifting guide shaft, 201-guide rail, 202-bevel rack, 203-roller box, 204-protective cover, 205-reducer, 206-coupling, 207-commutator, 208-bevel gear, 301-cage, 302-digital plate, 303-photoelectric limit bracket. DETAILED DESCRIPTION

[0021] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but should not be understood as limiting the present invention.

[0022] The first embodiment of this application is:

[0023] See also Figures 1 to 3 , Figure 1 This is a schematic diagram of the overall structure of the glass vertical sheet sorting cage and the transmission mechanism of the first embodiment of the utility model; Figure 2 This is a schematic diagram of the installation structure of the mobile rack of the first embodiment of the present utility model; Figure 3 This utility model Figure 2 Enlarged view of point A.

[0024] The present invention provides a vertical glass sorting cage transmission mechanism, comprising a base frame 101, an external cover 102, a storage cage frame 103, a walking assembly, and a conveying assembly, wherein the conveying assembly comprises a moving frame 104, a conveying motor 105, a conveying roller 106, a first conveying gear 107, a second conveying gear 108, an air pressure sensor 109, and a lifting component, wherein the lifting component comprises a lifting cylinder 110, a driving shaft 111, and a lifting guide shaft 112. The above-mentioned solution solves the problem of currently using a horizontal sorting cage to transport glass sheets, which requires the entire cage to be lifted up and moved vertically during use, resulting in slow access speeds, high energy consumption, and high risks, thus easily leading to safety accidents. It is understandable that the above-mentioned solution can be used in glass storage scenarios, and can also be used to solve walking and movement problems.

[0025] In this embodiment, the outer cover 102 is fixedly mounted on the base weld 101. The glass storage cage frame 103 is mounted on the base weld 101 via the travel assembly. The conveyor assembly is also mounted on the base weld 101. This allows for smoother, safer, and more energy-efficient conveyance of glass sheets, reducing the likelihood of safety accidents. The outer cover 102 is made of stainless steel and is welded to the base weld 101. The outer cover 102 provides dust protection.

[0026] Among them, the mobile frame 104 is installed on the base frame weld 101 and is located on the side of the base frame weld 101 close to the external cover 102, the transmission motor 105 is fixedly installed on the mobile frame 104, the transmission roller 106 is installed on the mobile frame 104, the transmission roller 106 is rotatably connected to the mobile frame 104, the first transmission gear 107 is fixedly connected to the output shaft of the transmission motor 105, the second transmission gear 108 is installed on the transmission roller 106, the first transmission gear 107 is engaged with the second transmission gear 108, and the lifting component is installed on the mobile frame 104. The material of the movable frame 104 is stainless steel, and the movable frame 104 supports the conveying motor 105, the conveying roller 106 and the lifting member. The inclination of the movable frame 104 is consistent with the hollow conveying inclination in the sheet storage cage frame 103, so that the conveying roller 106 is consistent with the hollow conveying inclination in the sheet storage cage frame 103, which is convenient for conveying the glass sheets; the conveying motor 105 is a servo motor, and the conveying motor 105 drives the first conveying gear 107 to rotate; the conveying roller 106 is located on the movable frame 104, and the conveying roller 106 is rotated by the driving force of the conveying motor 105, the first conveying gear 107 and the second conveying gear 108 to convey the glass sheets and convey the glass sheets to the sheet storage cage frame 103; the first conveying gear 107 is made of stainless steel, and the first conveying gear 107 is driven by the conveying motor 105 to rotate , driving the second transmission gear 108 to rotate; the material of the second transmission gear 108 is stainless steel, and the second transmission gear 108 causes the transmission roller 106 to rotate on the mobile frame 104; the lifting component causes the mobile frame 104 to move up and down, so that the height of the transmission roller 106 is flush with the bottom end of the glass sheet; when in use, the sheet storage cage frame 103 is moved to the position of the glass sheet to be transmitted, and the transmission roller 106 is flush with the bottom end of the glass sheet through the lifting component, and then the transmission motor 105 is started to rotate the first transmission gear 107, which drives the second transmission gear 108 to rotate, so that the transmission roller 106 rotates on the mobile frame 104, and the glass sheet is placed on the transmission roller 106, and the glass sheet is transported, so that the glass sheet is stored on the sheet storage cage frame 103, thereby more smoothly, safely and energy-savingly transporting the glass sheet, reducing the occurrence of safety accidents.

[0027] Secondly, the air pressure sensor 109 is fixedly mounted on the mobile frame 104. The air pressure sensor 109 is used to detect whether there is air pressure to determine whether there is a glass sheet, making the glass sheet entry and exit sensing detection more accurate. The air pressure sensor 109 is a mature existing technology and will not be described in detail in this solution.

[0028] Then, the lifting cylinder 110 is fixedly installed on the base frame welding 101; one end of the driving shaft 111 is fixedly connected to the output shaft of the lifting cylinder 110, and the other end of the driving shaft 111 is fixedly connected to the mobile frame 104; the lifting guide shaft 112 is fixedly installed on the mobile frame 104. There are two lifting cylinders 110, and the two lifting cylinders 110 are respectively installed on the base frame welding 101. Each lifting cylinder 110 is equipped with a driving shaft 111, and the lifting cylinder 110 drives the driving shaft 111; the driving shaft 111 is made of stainless steel, and the driving shaft 111 connects the lifting cylinder 110 and the mobile frame 104, pushing the mobile frame 104 up and down, so that the conveying roller 106 is flush with the bottom end of the glass sheet; the number of the lifting guide shaft 112 is There are two of them, one end of the two lifting guide shafts 112 is mounted on the mobile frame 104 by welding, and the other end of the two lifting guide shafts 112 is located on the through hole of the base frame weld 101, guiding the mobile frame 104 during the up and down movement; start the lifting cylinder 110, drive the pushing shaft 111, push the mobile frame 104 to move upward, and make the lifting guide shaft 112 move upward on the through hole of the mobile frame 104, so that the conveying roller 106 is flush with the bottom end of the glass sheet.

[0029] When a glass vertical sheet sorting cage transmission mechanism of this embodiment is in use, the sheet storage cage frame 103 is moved to the position of the glass sheet to be transmitted, the lifting cylinder 110 is started, the driving shaft 111 is driven to push the movable frame 104 to move upward, so that the transmission roller 106 is flush with the bottom end of the glass sheet, and then the transmission motor 105 is started to rotate the first transmission gear 107, which drives the second transmission gear 108 to rotate, so that the transmission roller 106 rotates on the movable frame 104, and the glass sheet is placed on the transmission roller 106 to be transported. At the same time, the air pressure sensor 109 detects whether there is air pressure to determine whether there is a glass sheet, so that the glass sheet entry and exit sensing detection is more accurate, and the glass sheet is stored on the sheet storage cage frame 103, thereby transporting the glass sheet more smoothly, safely and energy-savingly, reducing the occurrence of safety accidents.

[0030] The second embodiment of this application is:

[0031] See also Figures 4 to 6 ,in Figure 4 This is a schematic diagram of the installation structure of the protective cover of the second embodiment of the present utility model; Figure 5 This utility model Figure 4 Enlarged view of point B; Figure 6 It is a schematic diagram of the installation structure of the reducer of the second embodiment of the present utility model.

[0032] The travel assembly provided by the present invention includes a guide rail 201 , a bevel rack 202 , a roller box 203 , a protective cover 204 and a driving component, and the driving component includes a reducer 205 , a coupling 206 , a commutator 207 and a bevel gear 208 .

[0033] Among them, the number of the guide rails 201 is two, and the two guide rails 201 are respectively installed on the base frame weld 101, and each guide rail 201 is installed with the bevel rack 202, and the bevel rack 202 is fixedly connected to the guide rail 201, and the bevel rack 202 is fixedly connected to the base frame weld 101; the number of the roller boxes 203 is four, and the four roller boxes 203 are respectively installed on the film storage cage frame 103, and the roller boxes 203 are slidingly connected to the guide rails 201; the protective cover shell 204 is fixedly installed on the film storage cage frame 103; the driving component is installed on the film storage cage frame 103. The guide rail 201 is made of precision truss, and is fixed to the chassis weld 101 by welding. The guide rail 201 supports the sliding of the roller box 203. The bevel rack 202 is made of stainless steel, and is mounted on the chassis weld 101 by welding. One side of the bevel rack 202 is fixedly connected to the guide rail 201, and the bevel rack 202 cooperates with the driving member to make the film storage cage frame 103 move. The roller box 203 is made of stainless steel, and slides on the guide rail 201. The film storage cage frame 103 is convenient to move; the protective cover shell 204 is made of stainless steel, and the protective cover shell 204 plays a dust-proof role for the driving component; the driving component provides power to make the film storage cage frame 103 slide on the guide rail 201; through the driving component, the film storage cage frame 103 automatically slides on the guide rail 201 through the roller box 203, so that the hollow position on the film storage cage frame 103 is moved to the position of the glass sheet to be transported, thereby facilitating the movement of the film storage cage frame 103 and making the movement of the film storage cage frame 103 more stable and accurate.

[0034] Then, the reducer 205 is fixedly mounted on the film storage cage frame 103 and is located on the side of the film storage cage frame 103 close to the protective cover 204; the number of the couplings 206 is two, and the two couplings 206 are respectively mounted on the reducer 205, each coupling 206 is mounted with the commutator 207, and each commutator 207 is mounted with the bevel gear 208, and the bevel gear 208 is engaged with the bevel rack 202. The reducer 205 provides power to drive the two couplings 206 to rotate. The reducer 205 is a mature existing technology and will not be described in detail in this solution. The coupling 206 drives the commutator 207 to rotate. The coupling 206 is a mature existing technology and will not be described in detail in this solution. The commutator 207 converts the AC power in the armature winding into DC power between the brushes to drive the helical gear 208 to rotate. The commutator 207 is a mature existing technology and will not be described in detail in this solution. The bevel gear 208 is made of stainless steel and meshes with the bevel rack 202. During the rotation of the bevel gear 208, the roller box 203 slides on the guide rail 201, so that the film storage cage frame 103 moves; the reducer 205 is started to drive the coupling 206 to rotate, which drives the commutator 207 to rotate, and then drives the bevel gear 208 to rotate, so that the roller box 203 slides on the guide rail 201, so that the film storage cage frame 103 moves.

[0035] When a vertical glass sheet sorting cage transmission mechanism of this embodiment is in use, the reducer 205 is started to drive the coupling 206 to rotate, which drives the commutator 207 to rotate, and then drives the bevel gear 208 to rotate, so that the roller box 203 slides on the guide rail 201, and the hollow position on the glass storage cage frame 103 is moved to the position of the glass sheet to be transported, thereby facilitating the movement of the glass storage cage frame 103 and making the movement of the glass storage cage frame 103 more stable and accurate.

[0036] See also Figure 7The present invention also provides a vertical glass sorting cage that utilizes the aforementioned vertical glass sorting cage transmission mechanism for conveying, comprising a cage body 301, a number plate 302, and a photoelectric limit bracket 303. The number plate 302 is fixedly mounted on the cage body 301; the photoelectric limit bracket 303 is fixedly mounted on the cage body 301. The cage body 301 is made of stainless steel and stores and conveys glass pieces. There are six number plates 302, each mounted on the cage body 301. The numbers on the number plates 302 correspond to hollow positions on the cage body 301, and the glass pieces within the cage body 301 can be counted by observing the numbers on the number plates 302. The photoelectric limit bracket 303 is made of stainless steel and mounted on the cage body 301 by welding. The photoelectric limit bracket 303 limits the movement of the cage body 301.

[0037] In this embodiment, the cage 301 stores and transports the glass sheets, and can be counted by the digital plate 302. During the movement, the photoelectric limit bracket 303 can be used to limit the position, thereby effectively protecting the glass sheets and preventing them from being scratched during transportation.

[0038] The above disclosure is merely one or more preferred embodiments of the present application and is not intended to limit the scope of the present application. A person skilled in the art will understand that all or part of the processes of the above embodiments and equivalent changes made in accordance with the claims of the present application are still within the scope of the present application.

Claims

1. A glass vertical sheet sorting cage transmission mechanism, comprising a base frame weld, an external cover, a sheet storage cage frame and a travel assembly, wherein the external cover is fixedly mounted on the base frame weld, and the sheet storage cage frame is mounted on the base frame weld via the travel assembly, characterized in that: Also included is a transmission component; The conveying assembly includes a moving frame, a conveying motor, a conveying roller, a first conveying gear, a second conveying gear and a lifting component. The moving frame is mounted on the base frame weld and is located on a side of the base frame weld close to the external cover. The conveying motor is fixedly mounted on the moving frame, the conveying roller is mounted on the moving frame, and the conveying roller is rotatably connected to the moving frame. The first conveying gear is fixedly connected to the output shaft of the conveying motor, the second conveying gear is mounted on the conveying roller, the first conveying gear is meshed with the second conveying gear, and the lifting component is mounted on the moving frame.

2. The glass vertical sheet sorting cage transmission mechanism according to claim 1, characterized in that: The transmission component further includes an air pressure sensor, which is fixedly mounted on the movable frame.

3. The glass vertical sheet sorting cage transmission mechanism according to claim 1, characterized in that: The lifting component includes a lifting cylinder, a driving shaft and a lifting guide shaft. The lifting cylinder is fixedly mounted on the base frame; one end of the driving shaft is fixedly connected to the output shaft of the lifting cylinder, and the other end of the driving shaft is fixedly connected to the movable frame; the lifting guide shaft is fixedly mounted on the movable frame.

4. The glass vertical sheet sorting cage transmission mechanism according to claim 1, characterized in that: The walking assembly includes guide rails, bevel racks, roller boxes, protective cover shells and driving components. There are two guide rails, and the two guide rails are respectively mounted on the base frame weld. Each guide rail is mounted with the bevel rack, and the bevel rack is fixedly connected to the guide rail, and the bevel rack is fixedly connected to the base frame weld. There are four roller boxes, and the four roller boxes are respectively mounted on the film storage cage frame, and the roller boxes are slidably connected to the guide rails. The protective cover shell is fixedly mounted on the film storage cage frame; the driving component is mounted on the film storage cage frame.

5. The glass vertical sheet sorting cage transmission mechanism according to claim 4, characterized in that: The driving component includes a reducer, a coupling, a commutator and a helical gear. The reducer is fixedly mounted on the film storage cage frame and is located on the side of the film storage cage frame close to the protective cover shell; there are two couplings, and the two couplings are respectively mounted on the reducer, each coupling is mounted with the commutator, each commutator is mounted with the helical gear, and the helical gear is engaged with the helical rack.

6. A glass vertical sheet sorting cage, which is transported by the glass vertical sheet sorting cage transmission mechanism according to any one of claims 1 to 5, characterized in that: It comprises a cage body, a digital mark plate and a photoelectric limit bracket. The digital mark plate is fixedly installed on the cage body; the photoelectric limit bracket is fixedly installed on the cage body.