Pass-type heating plate table

The through-type heating plate stage heats the four sides of the glass in a step-by-step heating method, which solves the problem of excessive length of existing heating plate stage equipment, and achieves more flexible production space utilization and cost reduction.

CN224160555UActive Publication Date: 2026-04-24LANGFANG MGM AUTOMATION EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LANGFANG MGM AUTOMATION EQUIP CO LTD
Filing Date
2025-04-25
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing heating plates require the glass to be completely rested on the equipment for four-sided heating, resulting in excessively long equipment length and a large occupation of production space, which is a drawback, especially in production workshops with limited space.

Method used

The system employs a through-type heating plate stage, utilizing a first horizontal heating module, a second horizontal heating module, a vertical heating module, and a conveying assembly to heat the four sides of the glass in a step-by-step heating manner. The glass does not need to be completely stopped in the equipment, thus shortening the equipment length.

Benefits of technology

It enables effective heating of glass longer than the heating plate stage, shortens the production line length, improves production space utilization, simplifies the mechanical structure, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224160555U_ABST
Patent Text Reader

Abstract

The utility model relates to a pass-type heating sheet table which is characterized in that when glass is conveyed on a conveying assembly, a second transverse heating module and a first transverse heating module respectively heat the upper side edge and the lower side edge of the glass; when the glass is conveyed to the first station, the advancing front side edge of the glass and the vertical heating module form vertical face alignment so as to heat the front side edge of the glass, and when the glass is conveyed to the second station, the advancing rear side edge of the glass and the vertical heating module form vertical face alignment so as to heat the rear side edge of the glass. According to the through-type heating sheet table, the four edges of the glass can be heated without stopping all the glass in the through-type heating sheet table, the glass with the length larger than that of the through-type heating sheet table can be heated, compared with an existing heating sheet table, the through-type heating sheet table has the advantages that the length is shortened, the length of a production line can be shortened, and the production space can be utilized more flexibly.
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Description

Technical Field

[0001] This application relates to the field of insulating glass manufacturing technology, and in particular to a through-type heating plate stage. Background Technology

[0002] With the acceleration of urbanization, high-rise buildings such as office buildings and residential buildings have sprung up rapidly. The use of insulated glass is becoming increasingly common in various fields, which has accelerated the rapid development of the insulated glass machinery industry. At the same time, due to differences in demand, materials, and application areas, various types of insulated glass have emerged to meet the needs of use under different conditions.

[0003] A heating plate stage is a device that can heat all four edges of glass. Existing heating plates stage have four sets of infrared heating lamps, which heat all four edges of the glass simultaneously when the glass is placed on the stage.

[0004] However, existing heating plates require the entire glass to be placed on the heating plate, so the length of the heating plate must be greater than the length of the glass to be processed, which occupies a large amount of production space. This is a drawback when production workshop space is tight. Utility Model Content

[0005] This application provides a through-type heating plate stage, which can heat all four sides of the glass without having the glass completely resting on the through-type heating plate stage. It can heat glass that is longer than the through-type heating plate stage. Compared with the existing heating plate stages, this through-type heating plate stage is shorter, which is beneficial to shorten the production line length and make the production space more flexibly utilized.

[0006] To achieve the above objectives, this application adopts the following technical solution:

[0007] This application provides a through-type heating plate stage, including:

[0008] Mounting base and a first horizontal heating module, a vertical heating module and a conveying assembly mounted on the mounting base;

[0009] The lifting heating mechanism includes a lifting component and a second transverse heating module. The lifting component is mounted on the mounting base and is used to drive the second transverse heating module to lift.

[0010] The first horizontal heating module and the conveying assembly are located below the lifting heating mechanism. The first horizontal heating module is higher than the conveying assembly. The conveying assembly is used to convey the glass in the vertical state. The vertical heating module is located on one side of the conveying assembly.

[0011] When the glass is conveyed on the conveying assembly, the second transverse heating module is driven by the lifting assembly to align with the upper side of the glass. The second transverse heating module and the first transverse heating module heat the upper and lower sides of the glass, respectively.

[0012] The glass conveying path has a first station and a second station. When the glass is conveyed to the first station, its front side is aligned with the vertical heating module to heat the front side of the glass. When the glass is conveyed to the second station, its rear side is aligned with the vertical heating module to heat the rear side of the glass.

[0013] In some possible implementations, the through-type heating stage has an infeed side and an outfeed side, with glass entering from the infeed side and exiting from the outfeed side; the through-type heating stage also includes a first detection element mounted on a mounting base, the first detection element being located away from the outfeed side relative to the vertical heating module; when the first detection element detects that glass has passed through the corresponding position, the conveying assembly decelerates to a stop, so that the glass stops at a first station; when the first detection element detects that glass has left the corresponding position, the conveying assembly decelerates to a stop, so that the glass stops at a second station.

[0014] In some possible implementations, the through-type heating plate stage also includes a positioning component, which is set to correspond to the vertical heating module. The positioning component includes a drive component and a blocking component. The drive component is used to drive the blocking component to extend or retract. When the glass is conveyed to the first station, the drive component drives the blocking component to extend, and the blocking component abuts against the front end of the glass to restrict the glass from being conveyed on the conveying component.

[0015] In some possible implementations, the through-type heating stage has an infeed side and an outfeed side, with glass entering from the infeed side and exiting from the outfeed side. The through-type heating stage also includes a support assembly located on the outfeed side, with one end of the conveying assembly positioned below the support assembly. The support assembly is parallel to the conveying assembly and includes a mounting plate and multiple rollers. The mounting plate is mounted on a mounting base, and the multiple rollers are rotatably mounted on the mounting plate. As the glass exits from the outfeed side, the glass side rests against the multiple rollers, which provide rolling support to the glass side.

[0016] In some possible implementations, the lifting heating mechanism also includes a mounting component and a sliding block and a slide rail. The second transverse heating module is mounted on the mounting component, the slider is set on the mounting component, and the slide rail is set on the mounting base. During the process of the lifting component driving the mounting component to lift, the slider slides along the slide rail.

[0017] In some possible implementations, sliders are provided at both ends of the mounting component, and the sliders at both ends of the mounting component slide in cooperation with slide rails located at both ends of the mounting component.

[0018] In some possible implementations, the mounting base is provided with an inclined mounting section, and the lifting assembly and the conveying assembly are mounted on the mounting section; the lifting heating mechanism also includes a mounting component, a second transverse heating module is mounted on the mounting component, the lifting assembly is used to drive the mounting component to move up and down in the inclined direction, and the mounting component is provided with a roller assembly; during the glass conveying process, the mounting component is driven by the lifting assembly to the upper side of the glass, the glass is supported on the conveying assembly, and the roller assembly provides rolling support to the upper side of the glass.

[0019] In some possible implementations, the conveying assembly includes a plurality of conveying wheels spaced apart along a first direction, a first drive motor, and a transmission component. The conveying wheels are rotatably connected to the mounting portion, the first drive motor is mounted on the mounting portion, and the first drive motor is connected to the plurality of conveying wheels through the transmission component. Driven by the first drive motor, the transmission component drives the plurality of conveying wheels to rotate in order to convey glass supported on the plurality of conveying wheels.

[0020] In some possible implementations, the through-type heating stage also includes multiple limiting wheels rotatably connected to the mounting part. The multiple limiting wheels are located on one side of the conveying assembly. When the glass is conveyed on the conveying assembly, the limiting wheels are used to roll into contact with the side of the glass to limit the deformation of the glass relative to the conveying assembly.

[0021] In some possible implementations, the through-type heating plate stage also includes a baffle assembly mounted on the mounting base. The baffle assembly is located on one side of the first horizontal heating module, the second horizontal heating module, and the vertical heating module to shield the first horizontal heating module, the second horizontal heating module, and the vertical heating module.

[0022] As can be seen from the above technical solution, this application has at least the following beneficial effects:

[0023] This application provides a through-type heating plate stage, including a first horizontal heating module, a second horizontal heating module, a vertical heating module, and a conveying assembly. When glass is conveyed on the conveying assembly, the second horizontal heating module and the first horizontal heating module heat the upper and lower sides of the glass, respectively. When the glass is conveyed to the first station, the vertical heating module heats the front side of the glass. After a preset heating time, the glass continues to be conveyed. When the glass is conveyed to the second station, the vertical heating module heats the rear side of the glass. During the conveying process, the four sides of the glass are heated step by step. The glass does not need to stop completely in the through-type heating plate stage, and glass with a length greater than the through-type heating plate stage can be heated. Compared with existing heating plates, the through-type heating plate stage provided in this application embodiment has a shorter length, which is beneficial to shorten the production line length and make the production space more flexibly utilized.

[0024] It should be understood that the descriptions of technical features, technical solutions, beneficial effects, or similar language in this application do not imply that all features and advantages can be achieved in any single embodiment. Rather, it is understood that the description of a feature or beneficial effect means that a specific technical feature, technical solution, or beneficial effect is included in at least one embodiment. Therefore, the descriptions of technical features, technical solutions, or beneficial effects in this specification do not necessarily refer to the same embodiment. Furthermore, the technical features, technical solutions, and beneficial effects described in this embodiment can be combined in any suitable manner. Those skilled in the art will understand that embodiments can be implemented without one or more specific technical features, technical solutions, or beneficial effects of a particular embodiment. In other embodiments, additional technical features and beneficial effects may be identified in specific embodiments that do not embody all embodiments. Attached Figure Description

[0025] Figure 1 A schematic diagram of a specific embodiment of the through-type heating plate stage provided in this application;

[0026] Figure 2 for Figure 1 A diagram from another perspective;

[0027] Figure 3 for Figure 2 A schematic diagram of the installation base, conveying components, lifting and heating mechanism, vertical heating module and support components;

[0028] Figure 4 for Figure 3 Enlarged view of point I in the middle;

[0029] Figure 5 An exploded view of the positioning component provided in this application in one specific embodiment;

[0030] Figure 6 An exploded view of the support components, mounting base, and conveying components provided in this application in one specific embodiment;

[0031] Figure 7 An exploded view of a specific embodiment of the lifting and heating mechanism provided in this application;

[0032] Figure 8 An exploded view of the delivery assembly provided in this application in one specific embodiment;

[0033] Figure 9 An exploded view of the lifting assembly, slider, and slide rail provided in this application in a specific embodiment;

[0034] Figure 10 An exploded view of the mounting base, baffle assembly, and vertical heating module provided in this application in one specific embodiment.

[0035] Reference numerals: 1-Mounting base; 11-Mounting part; 12-Support leg; 13-Fixing rod; 14-Bottom support arm; 15-Top support arm; 16-Connecting frame; 17-Panel frame; 2-First horizontal heating module; 3-Vertical heating module; 4-Conveying assembly; 41-Conveying wheel; 42-First drive motor; 43-Guard plate; 44-Frame; 51-Lifting assembly; 511-Second drive motor; 512-Drive shaft; 513-Bearing seat; 514-Coupling; 515-Lifting module; 52-Second horizontal... 53-Heating module; 54-Mounting component; 55-Slide rail; 56-Roller assembly; 61-Feeding side; 62-Discharge side; 71-First detection element; 72-Second detection element; 73-Third detection element; 74-Fourth detection element; 8-Positioning assembly; 81-Drive component; 82-Blocking component; 83-Guide rod; 84-Fixing block; 85-Cylinder connecting plate; 9-Support assembly; 91-Mounting plate; 92-Guide wheel; 101-Limiting wheel; 102-Baffle assembly; X-First direction. Detailed Implementation

[0036] The terms "first," "second," and "third," etc., used in this application specification and accompanying drawings are used to distinguish different objects, not to limit a specific order.

[0037] In the embodiments of this application, the terms "exemplary" or "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design that is described as "exemplary" or "for example" in the embodiments of this application should not be construed as being more preferred or advantageous than other embodiments or design. Specifically, the use of the terms "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.

[0038] The existing heating plate stage has 4 sets of infrared heating lamps. Two sets of fixed infrared heating lamps are located at the bottom of the heating plate stage and the front side of the conveying direction, respectively. The other two sets of movable infrared heating lamps are installed on the movable crossbeam and the movable longitudinal beam, respectively. When the glass enters the heating plate stage, the movable crossbeam moves to the upper side of the glass. When the glass is fully in the heating plate stage, the movable longitudinal beam moves to the rear side of the glass. At this time, the 4 sets of infrared heating lamps heat the four sides of the glass simultaneously.

[0039] However, the glass needs to be completely rested in the heating plate to be heated, so the length of the heating plate must be greater than the length of the glass. This results in a large heating plate length, which occupies a large amount of production space, a drawback when production workshop space is limited.

[0040] In view of this, this application provides a through-type heating plate stage, including a first horizontal heating module, a second horizontal heating module, a vertical heating module, and a conveying assembly. When the glass is conveyed on the conveying assembly, the second horizontal heating module and the first horizontal heating module heat the upper and lower sides of the glass, respectively. When the glass is conveyed to the first station, the vertical heating module heats the front side of the glass. After a preset heating time, the glass continues to be conveyed. When the glass is conveyed to the second station, the vertical heating module heats the rear side of the glass. During the conveying process, the four sides of the glass are heated step by step. The glass does not need to stop completely in the through-type heating plate stage, and glass with a length greater than the through-type heating plate stage can be heated. Compared with the existing heating plate stages, the through-type heating plate stage provided in this application provides a shorter length, which is beneficial to shorten the production line length and make the production space more flexibly utilized.

[0041] The through-type heating plate stage provided in the embodiments of this application is described below with reference to the accompanying drawings, such as... Figure 1-4 As shown, the through-type heating plate stage includes a mounting base 1, a lifting heating mechanism, a first horizontal heating module 2, a vertical heating module 3, and a conveying assembly 4; the first horizontal heating module 2, the vertical heating module 3, and the conveying assembly 4 are mounted on the mounting base 1; the lifting heating mechanism includes a lifting assembly 51 and a second horizontal heating module 52, the lifting assembly 51 is mounted on the mounting base 1, and the lifting assembly 51 is used to drive the second horizontal heating module 52 to rise and fall; wherein, the first horizontal heating module 2 and the conveying assembly 4 are located below the lifting heating mechanism, the first horizontal heating module 2 is higher than the conveying assembly 4, the conveying assembly 4 is used to convey the glass in the vertical state, and the vertical heating module 3 is located on one side of the conveying assembly 4.

[0042] When the glass is conveyed on the conveying assembly 4, the second horizontal heating module 52 is driven by the lifting assembly 51 to align with the upper side of the glass. The second horizontal heating module 52 and the first horizontal heating module 2 heat the upper and lower sides of the glass, respectively. The glass conveying path has a first station and a second station. When the glass is conveyed to the first station, its front side is aligned with the vertical heating module 3 to heat the front side of the glass. When the glass is conveyed to the second station, its rear side is aligned with the vertical heating module 3 to heat the rear side of the glass.

[0043] The through-type heating plate stage is a piece of equipment in the production line. There are glass conveying devices on both sides of the through-type heating plate stage. The through-type heating plate stage has a feeding side 61 and a discharging side 62. The equipment located on the feeding side 61 feeds the glass into the feeding side 61 in a vertical state. The glass is conveyed by the conveying assembly 4 and finally leaves from the discharging side 62 and is transferred to the equipment located on the discharging side 62.

[0044] When the glass enters from the feed side 61, it is conveyed by the conveying assembly 4. The lower side of the glass aligns with the first horizontal heating module 2, and the second horizontal heating module 52 is driven by the lifting assembly 51 to align with the upper side of the glass. At this time, if the first horizontal heating module 2 and the second horizontal heating module 52 are turned on, they heat the lower and upper sides of the glass. When the glass is conveyed to the first station, its front side aligns with the vertical heating module 3. At this time, if the vertical heating module 3 is turned on, it heats the front side of the glass. When the glass is conveyed to the second station, its rear side aligns with the vertical heating module 3. At this time, if the vertical heating module 3 is turned on, it heats the rear side of the glass.

[0045] In one specific embodiment, the glass heating process is described as follows: When the glass enters from the feed side 61, the second horizontal heating module 52 is driven by the lifting component 51 to align with the upper side of the glass. The conveying component 4 conveys the glass. When the glass is conveyed to the first station, the conveying stops. At this time, the front side of the glass is aligned with the vertical heating module 3. The vertical heating module 3 is opened to heat the front side of the glass. When the heating time reaches the preset time, the front side of the glass is heated. The vertical heating module 3 is closed, and the first horizontal heating module 2 and the second horizontal heating module 52 are opened. The conveying component 4... The glass continues to be conveyed. The first horizontal heating module 2 and the second horizontal heating module 52 heat the lower and upper sides of the glass. When the glass is conveyed to the second station, the conveying stops. At this time, the rear side of the glass is aligned with the vertical heating module 3. The upper and lower sides of the glass are heated. The first horizontal heating module 2 and the second horizontal heating module 52 are turned off, and the vertical heating module 3 is turned on to heat the rear side of the glass. When the heating time reaches the preset time, the rear side of the glass is heated. The vertical heating module 3 is turned off, and the conveying component 4 continues to convey the glass. The glass leaves from the discharge side 62.

[0046] In this embodiment, the upper and lower sides of the glass can be heated during the conveying process in the through-type heating plate. When the glass is conveyed to the first station, the front side of the glass can be heated at the first station. When the glass is conveyed from the first station to the second station, the rear side of the glass can be heated at the second station. This through-type heating plate heats all four sides of the glass in stages during the conveying process of the glass by the conveying component 4. The glass does not need to stop completely in the through-type heating plate. Glass with a length greater than the through-type heating plate can be heated. Compared with the existing heating plate, the through-type heating plate provided in this embodiment shortens the length, which is beneficial to shorten the production line length and make the production space more flexibly utilized.

[0047] Moreover, compared to existing heating plates, the movable vertical beam has been eliminated, simplifying the mechanical structure and reducing production costs.

[0048] Specifically, the first horizontal heating module 2, the second horizontal heating module 52, and the vertical heating module 3 can be composed of one or more infrared heating lamps, which can heat the glass when turned on. In other embodiments, the first horizontal heating module 2, the second horizontal heating module 52, and the vertical heating module 3 can also be composed of other heating elements.

[0049] In one specific embodiment, the through-type heating plate stage further includes a first detection element 71, which is mounted on the mounting base 1 and located above the conveying assembly 4. The first detection element 71 is far from the discharge side 62 relative to the vertical heating module 3. When the first detection element 71 detects that glass has passed through the corresponding position, the conveying assembly 4 decelerates to a stop so that the glass stops at the first station. When the first detection element 71 detects that the glass has left the corresponding position, the conveying assembly 4 decelerates to a stop so that the glass stops at the second station.

[0050] Specifically, the first detection element 71 can be a photoelectric sensor, which is an electronic device that detects objects through light signals. It uses the emission, reflection, or obstruction of light to determine the presence and position of the target object. When the front side of the glass obstructs the first detection element 71, the first detection element 71 detects that glass has passed at the corresponding position. The control system controls the conveying assembly 4 to decelerate according to the detection information of the first detection element 71. When the conveying assembly 4 stops, the glass is conveyed to the first station. The glass continues to be conveyed along the first direction X. When the glass no longer obstructs the first detection element 71, the first detection element 71 detects that the glass has left the corresponding position. The control system controls the conveying assembly 4 to decelerate according to the detection information of the first detection element 71. When the conveying assembly 4 stops, the glass is conveyed to the second station.

[0051] In one specific embodiment, such as Figure 3-4 As shown, the through-type heating plate stage also includes a positioning component 8, which is set corresponding to the vertical heating module 3. The positioning component 8 includes a driving component 81 and a blocking component 82. The driving component 81 is used to drive the blocking component 82 to extend or retract. When the glass is conveyed to the first station, the driving component 81 drives the blocking component 82 to extend, and the blocking component 82 abuts against the front end of the glass to restrict the glass from being conveyed on the conveying component 4.

[0052] Specifically, such as Figure 5 As shown, the driving component 81 can be a cylinder, the blocking component 82 can be a stop block, the cylinder is connected to the cylinder connecting plate 85, the fixing block 84 is fixed on the mounting base 1, and the guide rod 83 slides through the fixing block 84. When the glass is conveyed to the first station, the cylinder retracts, thereby driving the guide rod 83 and the stop block to move outward. When the cylinder retracts completely, the stop block just blocks the glass, thereby achieving the positioning function of the glass.

[0053] To prevent the glass from deforming when it leaves the discharge side 62, the through-type heating plate stage also includes a support assembly 9. The support assembly 9 is located on the discharge side 62, and one end of the conveying assembly 4 is located below the support assembly 9. The support assembly 9 is parallel to the conveying assembly 4. The support assembly 9 includes a mounting plate 91 and multiple rollers 92. The mounting plate 91 is mounted on the mounting base 1, and the multiple rollers 92 are rotatably mounted on the mounting plate 91. During the process of the glass leaving the discharge side 62, the side of the glass rests against the multiple rollers 92, and the multiple rollers 92 provide rolling support to the side of the glass.

[0054] In this embodiment, when the glass is conveyed away from the through-type heating plate by the conveying component 4, the multiple rollers 92 of the support component 9 can support the side of the glass, effectively preventing the glass from deforming when leaving, and avoiding the collision caused by the deformation of the glass, which could damage the glass and the equipment.

[0055] Specifically, such as Figure 6 As shown, the connecting frame 16 is part of the mounting base 1, the panel frame 17 is connected to the connecting frame 16, the mounting plate 91 is mounted on the panel frame 17, and multiple rollers 92 are rotatably mounted on the mounting plate 91. The rotation axis of the rollers 92 is perpendicular to the conveying assembly 4, and the multiple rollers 92 have a small row spacing, which can more evenly support the side of the glass.

[0056] In one specific embodiment, such as Figure 7-8 As shown, the through-type heating plate stage also includes a second detection element 72, a third detection element 73, and a fourth detection element 74. The second detection element 72 is installed on the mounting base 1, located above the conveying assembly 4, and close to the feed side 61. The third detection element 73 and the fourth detection element 74 are installed on one side of the second transverse heating module 52, specifically on the mounting member 53. The second transverse heating module 52 is also installed on the mounting member 53.

[0057] When glass enters from the feed side 61, the second detection element 72 detects that glass has passed through the corresponding position. The control system controls the conveying assembly 4 to stop according to the detection information of the second detection element 72, and controls the lifting assembly 51 to drive the mounting piece 53 to rise. When the third detection element 73 detects the glass and the fourth detection element 74 detects the upper edge of the glass, the control system controls the lifting assembly 51 to stop according to the detection information of the third detection element 73 and the fourth detection element 74. At this time, the mounting piece 53 moves to the upper side of the glass, and the second transverse heating module 52 is aligned with the upper edge of the glass.

[0058] The second detection element 72 and the third detection element 73 can be photoelectric sensors, and the fourth detection element 74 can be an optical fiber sensor.

[0059] To improve the lifting reliability of the second horizontal heating module 52, such as Figure 7 , Figure 9 As shown, the lifting heating mechanism also includes a mounting component 53 and a sliding block 54 and a slide rail 55 that are slidably engaged. The second transverse heating module 52 is mounted on the mounting component 53, the slider 54 is disposed on the mounting component 53, and the slide rail 55 is disposed on the mounting base 1. During the process of the lifting component 51 driving the mounting component 53 to lift, the slider 54 slides along the slide rail 55.

[0060] To further improve the reliability of lifting, sliders 54 are provided at both ends of the mounting component 53, and the sliders 54 at both ends of the mounting component 53 slide in cooperation with the slide rails 55 located at both ends of the mounting component 53.

[0061] Specifically, such as Figure 9 As shown, the lifting assembly 51 includes a second drive motor 511, a drive shaft 512, a bearing housing 513, a coupling 514, and a lifting module 515. The second drive motor 511 is mounted on the mounting base 1, the drive shaft 512 is connected to the second drive motor 511, the bearing housing 513 is mounted on the mounting base 1, the drive shaft 512 passes through the bearing housing 513, and the end of the drive shaft 512 is connected to the lifting module 515 through the coupling 514. The lifting module 515 can be connected to the slider 54 through a belt drive component or a chain drive component.

[0062] Using this structure for lifting and lowering the mounting component 53 not only results in a simple and aesthetically pleasing structure, but also improves transmission efficiency and ensures that the mounting component 53 will not jam or tilt on both sides.

[0063] Taking the belt drive component as an example, the second drive motor 511 drives the drive shaft 512 to rotate, the drive shaft 512 drives the pulley of the belt drive component to rotate, the pulley drives the synchronous belt to move, the synchronous belt drives the mounting component 53 to rise and fall, and during the rising and falling process, the mounting component 53 drives the slider 54 to slide along the slide rail 55.

[0064] In one specific embodiment, such as Figure 3 , Figure 10 As shown, the mounting base 1 is provided with an inclined mounting part 11, and the lifting assembly 51 and the conveying assembly 4 are mounted on the mounting part 11; the lifting heating mechanism also includes a mounting component 53, and a second transverse heating module 52 is mounted on the mounting component 53. The lifting assembly 51 is used to drive the mounting component 53 to rise and fall in the inclined direction, and a roller assembly 56 is provided on the mounting component 53; during the glass conveying process, the mounting component 53 is driven by the lifting assembly 51 to the upper side of the glass, the glass is supported on the conveying assembly 4, and the roller assembly 56 provides rolling support to the upper side of the glass.

[0065] Specifically, the roller assembly 56 consists of multiple rollers arranged along the first direction X. The rollers are rotatably connected to the mounting member 53, and the rotation axis of the rollers is perpendicular to the conveying assembly 4.

[0066] When the glass enters the through-type heating plate stage in a vertical position, the lower edge of the glass is supported by the conveying assembly 4, and the mounting piece 53 is driven to align with the upper side of the glass. The glass rests on the roller assembly 56 in an inclined state. As the conveying assembly 4 conveys the glass, the roller assembly 56 provides rolling support to the upper side of the glass, ensuring the stability of the glass conveyed in a vertical position.

[0067] Specifically, such as Figure 8 As shown, the conveying assembly 4 includes a plurality of conveying wheels 41 spaced apart along a first direction X, a first drive motor 42, and a transmission component. The conveying wheels 41 are rotatably connected to the mounting part 11. The first drive motor 42 is mounted on the mounting part 11 and is connected to the plurality of conveying wheels 41 through the transmission component. Under the drive of the first drive motor 42, the transmission component drives the plurality of conveying wheels 41 to rotate, so as to convey glass supported on the plurality of conveying wheels 41.

[0068] The glass is conveyed on the conveying assembly 4. Specifically, the bottom of the glass is supported on multiple conveying wheels 41. The conveying wheels 41 rotate, driving the glass to be conveyed along the first direction X.

[0069] The transmission mechanism of the transmission component can be either belt drive or chain drive.

[0070] like Figure 8 As shown, the conveying assembly 4 also includes a guard plate 43 and a frame 44. The frame 44 is installed on the mounting part 11, the guard plate 43 is installed on the frame 44, and multiple conveying wheels 41 are installed at intervals on the frame 44. The guard plate 43 is located on one side of the transmission component and is used to protect the transmission component to prevent mechanical damage.

[0071] To ensure stable glass transport on conveying assembly 4, such as Figure 8 As shown, the through-type heating plate stage also includes multiple limiting wheels 101, which are rotatably connected to the mounting part 11. The multiple limiting wheels 101 are located on one side of the conveying assembly 4. When the glass is conveyed on the conveying assembly 4, the limiting wheels 101 are used to roll and contact the side of the glass to limit the deformation of the glass relative to the conveying assembly 4.

[0072] like Figure 8 As shown, multiple limiting wheels 101 are arranged along the first direction X. The rotation axis of the limiting wheels 101 is perpendicular to the conveying assembly 4. The multiple limiting wheels 101 are located on the side of the conveying assembly 4 near the mounting part 11, and are positioned between two spaced-apart conveying wheels 41. The lower edge of the glass is supported on the multiple conveying wheels 41. During the process of the multiple conveying wheels 41 conveying the glass along the first direction X, if the lower side of the glass tilts towards the direction near the mounting part 11, the side of the glass facing the mounting part 11 will roll into contact with the limiting wheels 101, restricting the lower side of the glass from continuing to tilt towards the direction near the mounting part 11, thereby preventing the glass from detaching from the multiple conveying wheels 41.

[0073] To ensure insulation performance, such as Figure 1 , Figure 10 As shown, the through-type heating plate stage also includes a baffle assembly 102, which is installed on the mounting base 1. The baffle assembly 102 is located on one side of the first horizontal heating module 2, the second horizontal heating module 52 and the vertical heating module 3 to block the first horizontal heating module 2, the second horizontal heating module 52 and the vertical heating module 3.

[0074] The baffle assembly 102 serves both a decorative purpose and prevents heat from spreading from the heating module, thus ensuring heat preservation.

[0075] Specifically, such as Figure 10 As shown, the bottom of the mounting base 1 is provided with an adjustable support leg 12. The adjustable support leg 12 is placed on the ground, and the height of the mounting base 1 can be adjusted by adjusting the support leg 12.

[0076] The mounting base 1 has an inclined mounting portion 11, a top support arm 15, a bottom support arm 14, and a fixing rod 13. The top support arm 15 and the bottom support arm 14 are respectively connected to the two ends of the mounting portion 11, and the two ends of the fixing rod 13 are respectively connected to the top support arm 15 and the bottom support arm 14. The vertical heating module 3 is connected to the fixing rod 13 near the discharge side 62. The conveying assembly 4 is mounted on the mounting portion 11, and the vertical heating module 3 is located on one side of the conveying assembly 4, with a gap between the vertical heating module 3 and the conveying assembly 4. The first transverse heating module 2 is connected to the bottom end of the mounting portion 11, and the baffle assembly 102 is connected to two fixing rods 13 arranged along the first direction X. The baffle assembly 102 is composed of multiple baffles.

[0077] The vertical heating module 3 may include multiple heating modules arranged vertically. Each heating module works independently, and the corresponding heating module can be turned on according to the height of the glass, thereby saving energy.

[0078] The following describes the glass heating process of a through-type heating stage in one specific embodiment:

[0079] The conveying device near the feed side 61 transports the glass to the through-type heating plate stage. The second detection element 72 detects the glass passing by, the conveying assembly 4 stops working, and the lifting assembly 51 starts operating, driving the mounting component 53 to rise or fall. When the third detection element 73 detects the glass and the fourth detection element 74 detects the upper edge of the glass, the lifting assembly 51 stops operating. At this time, the roller assembly 56 on the mounting component 53 can support the upper edge of the glass, and the conveying assembly 4 starts, continuing to transport the glass along the first direction X. When the first detection element 71 detects the glass passing by, the conveying assembly 4... The deceleration is accelerated, the drive component 81 drives the blocking component 82 to extend outward, the front edge of the glass contacts the blocking component 82, the conveying component 4 stops, at this time the glass is located at the first station, the front side of the glass is aligned with the vertical heating module 3; the vertical heating module 3 opens to heat the front side of the glass, when the front side of the glass is heated to the preset time, the first horizontal heating module 2 and the second horizontal heating module 52 open, the blocking component 82 retracts, the conveying component 4 operates, and continues to convey the glass. During the conveying process, the first horizontal heating module 2 and the second horizontal heating module 52 heat the lower and upper sides of the glass.

[0080] When the first detection element 71 detects that the glass has left the corresponding position, the conveying assembly 4 decelerates to a stop. At this time, the glass is conveyed to the second station, and the rear side of the glass is aligned with the vertical heating module 3. The first horizontal heating module 2 and the second horizontal heating module 52 are turned off, and the vertical heating module 3 heats the rear side of the glass. When the heating reaches the preset time, the vertical heating module is turned off, the conveying assembly 4 is activated, and the glass is conveyed away from the through heating plate stage, and the heating process is completed.

[0081] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any changes or substitutions within the technical scope disclosed in this application should be covered within the scope of protection of this application.

Claims

1. A through-type heating plate stage, characterized in that, include: The mounting base and the first horizontal heating module, the vertical heating module and the conveying assembly mounted on the mounting base; A lifting heating mechanism includes a lifting component and a second transverse heating module. The lifting component is mounted on a mounting base and is used to drive the second transverse heating module to lift. The first horizontal heating module and the conveying assembly are located below the lifting heating mechanism. The first horizontal heating module is higher than the conveying assembly. The conveying assembly is used to convey the glass in the vertical state. The vertical heating module is located on one side of the conveying assembly. When the glass is conveyed on the conveying assembly, the second lateral heating module is driven by the lifting assembly to align with the upper side of the glass, and the second lateral heating module and the first lateral heating module heat the upper and lower sides of the glass respectively. The glass conveying path has a first station and a second station. When the glass is conveyed to the first station, its front side is aligned with the vertical heating module to heat the front side of the glass. When the glass is conveyed to the second station, its rear side is aligned with the vertical heating module to heat the rear side of the glass.

2. The through-type heating plate stage according to claim 1, characterized in that, The through-type heating plate stage has a feeding side and a discharging side, with the glass entering from the feeding side and exiting from the discharging side; The through-type heating plate stage also includes a first detection element, which is mounted on the mounting base and is located away from the discharge side relative to the vertical heating module. When the first detection element detects that glass has passed through the corresponding position, the conveying assembly decelerates to a stop so that the glass stops at the first station; when the first detection element detects that glass has left the corresponding position, the conveying assembly decelerates to a stop so that the glass stops at the second station.

3. The through-type heating plate stage according to claim 1, characterized in that, The through-type heating plate stage also includes a positioning component, which is configured to correspond to the vertical heating module. The positioning component includes a driving component and a blocking component, and the driving component is used to drive the blocking component to extend or retract. When the glass is conveyed to the first station, the drive unit drives the blocking member to extend, and the blocking member abuts against the front end of the glass to restrict the glass from being conveyed on the conveying assembly.

4. The through-type heating plate stage according to claim 1, characterized in that, The through-type heating plate stage has a feeding side and a discharging side, with the glass entering from the feeding side and exiting from the discharging side; The through-type heating plate stage also includes a support assembly, which is disposed on the discharge side. One end of the conveying assembly is located below the support assembly. The support assembly is parallel to the conveying assembly. The support assembly includes a mounting plate and multiple rollers. The mounting plate is mounted on the mounting base, and the multiple rollers are rotatably mounted on the mounting plate. As the glass leaves the discharge side, the glass side rests against multiple rollers, which provide rolling support to the glass side.

5. The through-type heating plate stage according to claim 1, characterized in that, The lifting and heating mechanism also includes a mounting component and a sliding block and a slide rail. The second transverse heating module is mounted on the mounting component, the slider is disposed on the mounting component, and the slide rail is disposed on the mounting base. During the process of the lifting component driving the mounting component to lift and lower, the slider slides along the slide rail.

6. The through-type heating plate stage according to claim 5, characterized in that, The mounting component has sliders at both ends, and the sliders at both ends of the mounting component slide in cooperation with slide rails located at both ends of the mounting component.

7. The through-type heating plate stage according to claim 1, characterized in that, The mounting base is provided with an inclined mounting portion, and the lifting assembly and the conveying assembly are mounted on the mounting portion; The lifting and heating mechanism further includes a mounting component, the second transverse heating module is mounted on the mounting component, the lifting component is used to drive the mounting component to lift and lower in an inclined direction, and a roller assembly is provided on the mounting component; During the glass conveying process, the mounting component is driven to the upper side of the glass by the lifting assembly, the glass is supported on the conveying assembly, and the roller assembly provides rolling support to the upper side of the glass.

8. The through-type heating plate stage according to claim 7, characterized in that, The conveying assembly includes a plurality of conveying wheels spaced apart along a first direction, a first drive motor, and a transmission component. The conveying wheels are rotatably connected to the mounting portion, the first drive motor is mounted on the mounting portion, and the first drive motor is connected to the plurality of conveying wheels through the transmission component. Driven by the first drive motor, the transmission component drives the plurality of conveying wheels to rotate, so as to convey glass supported on the plurality of conveying wheels.

9. The through-type heating plate stage according to claim 7, characterized in that, The through-type heating plate stage also includes multiple limiting wheels, which are rotatably connected to the mounting part. The multiple limiting wheels are located on one side of the conveying assembly. When the glass is conveyed on the conveying assembly, the limiting wheels are used to roll into contact with the side of the glass to limit the deformation of the glass relative to the conveying assembly.

10. The through-type heating plate stage according to claim 1, characterized in that, The through-type heating plate stage also includes a baffle assembly, which is installed on the mounting base and is located on one side of the first horizontal heating module, the second horizontal heating module and the vertical heating module to shield the first horizontal heating module, the second horizontal heating module and the vertical heating module.