Glass deplating cleaning device

By designing an automated glass deplating and cleaning device, the transmission mechanism and spray components are used to achieve uniform deplating and cleaning of glass on both sides, solving the problems of low efficiency and poor effect in the prior art, and achieving efficient and automated glass processing.

CN223255131UActive Publication Date: 2025-08-22SHENZHEN HANDONG GLASS EQUIP MFG CO LTD
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Patent Information

Application Number
CN202422603243.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-08-22
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The existing glass fading process relies on manual operation, which leads to low efficiency and is difficult to ensure that both sides of the glass achieve a preset fading effect.

Method used

A glass plating cleaning device is designed, including a transmission mechanism, a plating module and a cleaning module. The first and second plating spray components are used to spray plating agent on both sides of the transmission mechanism, and the sprayed liquid is collected and filtered through the filter drum device. Combined with a variety of cleaning mechanisms and drying modules, automated double-sided plating and cleaning of glass is realized.

Benefits of technology

It realizes uniform deplating and efficient cleaning of glass on both sides, improves the efficiency of glass deplating, reduces manual operation, and ensures the deplating effect and cleanliness.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a glass deplating cleaning device, which comprises a case, and a transmission mechanism, a deplating module and a cleaning module which are arranged in the case, the deplating module comprises a first deplating spraying assembly and a second deplating spraying assembly, the first deplating spraying assembly and the second deplating spraying assembly are arranged on the two opposite sides of the conveying mechanism correspondingly, the conveying mechanism comprises a plurality of conveying rollers, and a gap is formed between every two adjacent conveying rollers. The first deplating spraying assembly and the second deplating spraying assembly each comprise a plurality of first spraying pipes which are sequentially arranged in the conveying direction of the conveying mechanism, each first spraying pipe is provided with a plurality of first fan-shaped spraying heads, and the first spraying pipes are arranged corresponding to the gaps. The glass deplating cleaning device can guarantee that the preset deplating effect can be achieved on the two sides of the glass, and the glass deplating effect and efficiency are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass production and manufacturing, in particular to a glass de-plating cleaning device. Background Art

[0002] During the glass processing process, a de-plating process is required to remove the protective oil from both sides and clean any surface impurities such as abrasive powder. Existing glass de-plating processes rely on manual labor, requiring the glass to be soaked and the soaking time to be controlled. After the soaking is complete, the glass is manually transferred to a cleaning device for cleaning. This results in low efficiency in de-plating, and manual operation makes it difficult to achieve the desired de-plating effect on both sides of the glass. Utility Model Content

[0003] The technical problem to be solved by the utility model is to provide a glass de-plating cleaning device to solve the problems of low efficiency and poor effect of the existing glass de-plating.

[0004] In order to solve the above technical problems, the technical solution adopted by the present invention is: a glass stripping and cleaning device, comprising a chassis and a transmission mechanism, a stripping module and a cleaning module arranged in the chassis, the stripping module comprising a first stripping spray assembly and a second stripping spray assembly, the first stripping spray assembly and the second stripping spray assembly being respectively arranged on opposite sides of the transmission mechanism, the transmission mechanism comprising a plurality of transmission rollers, and a gap being provided between two adjacent transmission rollers, the first stripping spray assembly and the second stripping spray assembly both comprising a plurality of first spray pipes arranged in sequence along the transmission direction of the transmission mechanism, the first spray pipe being provided with a plurality of first fan-shaped nozzles, and the first spray pipes being arranged corresponding to the gap.

[0005] Furthermore, the stripping module includes a first stripping spray mechanism and a second stripping spray mechanism, the first stripping spray mechanism and the second stripping spray module are arranged in sequence along the transmission direction of the transmission mechanism, and the first stripping spray mechanism and the second stripping spray mechanism both include the first stripping spray component and the second stripping spray component.

[0006] Furthermore, the stripping module also includes a first filter drum device and a second filter drum device, the chassis includes a first liquid receiving tank and a second liquid receiving tank, a partition is provided between the first liquid receiving tank and the second liquid receiving tank, the first stripping spray mechanism is provided in the first liquid receiving tank, the second stripping spray mechanism is provided in the second liquid receiving tank, the first filter drum device is connected to the first liquid receiving tank, and the second filter drum device is connected to the second liquid receiving tank.

[0007] Furthermore, the penetration direction of the nozzle of the first fan-shaped nozzle is inclined relative to the vertical direction.

[0008] Furthermore, the cleaning device includes a first flushing mechanism, a first detergent cleaning mechanism, an ultrasonic cleaning mechanism, a second detergent cleaning mechanism, a second flushing mechanism, a pure water scrubbing mechanism, and a pure water flushing mechanism, which are arranged in sequence along the transmission direction of the transmission mechanism; wherein the chassis is provided with a immersion tank corresponding to the ultrasonic cleaning mechanism, and the ultrasonic cleaning mechanism is arranged in the immersion tank.

[0009] Furthermore, the first detergent cleaning mechanism, the second detergent cleaning mechanism and the pure water scrubbing mechanism all include multiple cleaning spray assemblies and multiple first roller brush assemblies, and the multiple cleaning spray assemblies are arranged in sequence along the transmission direction of the transmission mechanism. The first roller brush assembly is provided between two adjacent cleaning spray assemblies, and the first roller brush assembly is provided in the gap. The first roller brush assembly includes an upper roller brush and a lower roller brush, and a roller brush channel is formed between the upper roller brush and the lower roller brush. The cleaning spray assembly includes a second spray pipe and a third spray pipe, and the second spray pipe and the third spray pipe are respectively provided on opposite sides of the transmission mechanism. The second spray pipe is provided with multiple second fan-shaped nozzles, and the third spray pipe is provided with multiple third fan-shaped nozzles.

[0010] Furthermore, it also includes a drying module, which is arranged in the chassis, and the cleaning module and the drying module are arranged in sequence along the transmission direction of the transmission mechanism. The drying module includes a plurality of wind knife assemblies arranged in sequence along the transmission direction of the transmission mechanism, and the wind knife assembly includes a first wind knife member and a second wind knife member, and the air outlet of the second wind knife member is arranged opposite to the gap.

[0011] Furthermore, it also includes a pre-spray brushing module, which is arranged in the chassis, and the pre-spray brushing module and the stripping module are arranged in sequence along the transmission direction of the transmission mechanism. The pre-spray brushing module includes a pre-spray mechanism and a second roller brush assembly arranged in sequence along the transmission direction of the transmission mechanism, and the pre-spray mechanism includes a fourth spray pipe and a fifth spray pipe, and the fourth spray pipe and the fifth spray pipe are respectively arranged on opposite sides of the transmission mechanism, and a plurality of fourth fan-shaped nozzles are provided on the fourth spray pipe, and a plurality of fifth fan-shaped nozzles are provided on the fifth spray pipe.

[0012] Furthermore, the transmission mechanism also includes multiple pressure roller shafts, and the multiple pressure roller shafts are arranged in a one-to-one correspondence with the multiple transmission roller shafts. The transmission roller is provided with multiple stop wheels along its axial direction, and a transmission channel is formed between two adjacent stop wheels. The first fan-shaped nozzle is arranged corresponding to the transmission channel.

[0013] Furthermore, it also includes an air cutting component, which is arranged in the chassis and between the deplating module and the cleaning module.

[0014] The beneficial effects of the utility model are as follows: the utility model designs a glass de-plating cleaning device, which can spray de-plating chemicals on both sides of the glass through the first de-plating spray component and the second de-plating spray component to ensure that both sides of the glass can achieve a preset de-plating effect, and the glass de-plating mechanism does not require manual handling of the glass. The glass de-plating cleaning device has high de-plating efficiency and good de-plating effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a structural schematic diagram of the glass de-plating cleaning device according to the present invention in one embodiment;

[0016] Figure 2 for Figure 1 Schematic diagram of the structure of the glass de-plating and cleaning device shown in FIG.

[0017] Figure 3 for Figure 1 Schematic diagram of the structure of the stripping module at one viewing angle;

[0018] Figure 4 for Figure 1 Schematic diagram of the structure of the stripping module from another perspective;

[0019] Figure 5 The structure of the first detergent cleaning mechanism / second detergent cleaning mechanism / pure water scrubbing mechanism is schematically shown;

[0020] Figure 6 The structure of the drying module is schematically shown;

[0021] Figure 7 The structure of the pre-spray scrubbing module is schematically shown;

[0022] Figure 8 The structure of the transmission mechanism is schematically shown;

[0023] Figure 9 A cross-sectional view of the first roller brush assembly is schematically shown.

[0024] Description of labels:

[0025] 1. Chassis; 11. First liquid receiving tank; 12. Second liquid receiving tank; 13. Soaking tank;

[0026] 2. Transmission mechanism; 21. Transmission roller; 22. Gap; 23. Pressure roller shaft; 24. Stop roller; 25. Transmission channel;

[0027] 3. Stripping module; 31. First stripping spray assembly; 32. Second stripping spray assembly; 33. First spray pipe; 34. First fan-shaped nozzle; 35. First stripping spray mechanism; 36. Second stripping spray mechanism; 37. First filter drum device; 38. Second filter drum device;

[0028] 4. Cleaning module; 41. First flushing mechanism; 42. First detergent cleaning mechanism; 43. Ultrasonic cleaning mechanism; 44. Second detergent cleaning mechanism; 45. Second flushing mechanism; 46. Pure water scrubbing mechanism; 47. Pure water rinsing mechanism;

[0029] 5. Cleaning spray group; 51. Second spray pipe; 52. Third spray pipe; 53. Second fan-shaped spray nozzle; 54. Third fan-shaped spray nozzle;

[0030] 6. First roller brush assembly; 61. Upper roller brush; 62. Lower roller brush; 63. Roller brush channel;

[0031] 7. Drying module; 71. Air knife assembly; 72. First air knife component; 73. Second air knife component;

[0032] 8. Pre-spray scrubbing module; 81. Pre-spray mechanism; 82. Second roller brush assembly; 83. Fourth spray pipe; 84. Fifth spray pipe; 85. Fourth fan-shaped nozzle; 86. Fifth fan-shaped nozzle;

[0033] 9. Wind-cut pieces. DETAILED DESCRIPTION

[0034] In order to explain the technical content, achieved objectives and effects of the present invention in detail, the following description is given in conjunction with the embodiments and the accompanying drawings.

[0035] Please refer to Figures 1 to 9 A glass stripping and cleaning device includes a chassis 1 and a transmission mechanism 2, a stripping module 3 and a cleaning module 4 arranged in the chassis 1, the stripping module 3 includes a first stripping spray assembly 31 and a second stripping spray assembly 32, the first stripping spray assembly 31 and the second stripping spray assembly 32 are respectively arranged on opposite sides of the transmission mechanism 2, the transmission mechanism 2 includes a plurality of transmission rollers 21, and a gap 22 is formed between two adjacent transmission rollers 21, the first stripping spray assembly 31 and the second stripping spray assembly 32 each include a plurality of first spray pipes 33 arranged in sequence along the transmission direction of the transmission mechanism 2, the first spray pipes 33 are provided with a plurality of first fan-shaped nozzles 34, and the first spray pipes 33 are arranged corresponding to the gaps 22.

[0036] The key concept of the present invention is that the glass stripping and cleaning device provided by the present invention drives the glass to move by means of a transmission roller, and a gap 22 is defined between two adjacent transmission rollers. A first stripping spray assembly 31 and a second stripping spray assembly 32 are respectively provided on opposite sides of the transmission mechanism 2. The first spray pipe 33 of the first coating spray assembly and the first spray pipe 33 of the second stripping spray assembly 32 are both provided corresponding to the gap 22, so that the stripping agent is sprayed on opposite sides of the glass through the gap 22, thereby ensuring that both sides of the glass can achieve a good stripping effect. The transmission mechanism 2 can then transfer the stripped glass to the cleaning module 4 for cleaning to remove the coating on the glass.

[0037] As can be seen from the above description, the beneficial effects of the present invention are as follows: the present invention designs a glass de-plating cleaning device, which can spray de-plating chemicals on both sides of the glass through the first de-plating spray assembly 31 and the second de-plating spray assembly 32 to ensure that both sides of the glass can achieve a preset de-plating effect, and the glass de-plating mechanism does not require manual handling of the glass. The glass de-plating cleaning device has high de-plating efficiency and good de-plating effect.

[0038] Furthermore, the stripping module 3 includes a first stripping spray mechanism 35 and a second stripping spray mechanism 36. The first stripping spray mechanism 35 and the second stripping spray module are arranged in sequence along the transmission direction of the transmission mechanism 2. The first stripping spray mechanism 35 and the second stripping spray mechanism 36 both include the first stripping spray component 31 and the second stripping spray component 32.

[0039] It can be seen from the above description that the first stripping spray mechanism 35 and the second coating spray mechanism of the stripping cleaning device can spray two different stripping agents on the glass respectively.

[0040] Furthermore, the stripping module 3 also includes a first filter drum device 37 and a second filter drum device 38, the chassis 1 includes a first liquid receiving trough 11 and a second liquid receiving trough 12, a partition is provided between the first liquid receiving trough 11 and the second liquid receiving trough 12, the first stripping spray mechanism 35 is provided in the first liquid receiving trough 11, the second stripping spray mechanism 36 is provided in the second liquid receiving trough 12, the first filter drum device 37 is connected to the first liquid receiving trough 11, and the second filter drum device 38 is connected to the second liquid receiving trough 12.

[0041] As can be seen from the above description, the liquid receiving tank can collect the stripping liquid after spraying, and filter the stripping liquid after spraying through the filter drum device to filter out the plating layer in the stripping liquid. The filtered stripping liquid is reused to reduce costs. The partition plays an isolating role for the first liquid receiving tank 11 and the second liquid receiving tank 12 to avoid mixing of the stripping agents of the two stripping spray mechanisms, thereby ensuring the stripping effect.

[0042] Furthermore, the penetration direction of the nozzle of the first fan-shaped nozzle 34 is inclined relative to the vertical direction.

[0043] As can be seen from the above description, the inclined first fan-shaped nozzle 34 has a better effect in spraying the stripping agent, which can increase the contact area between the stripping agent spray and the glass, thereby improving the stripping effect.

[0044] Furthermore, the cleaning device includes a first flushing mechanism 41, a first detergent cleaning mechanism 42, an ultrasonic cleaning mechanism 43, a second detergent cleaning mechanism 44, a second flushing mechanism 45, a pure water brushing mechanism 46, and a pure water flushing mechanism 47, which are arranged in sequence along the transmission direction of the transmission mechanism 2; wherein, the chassis 1 is provided with an immersion tank 13 corresponding to the ultrasonic cleaning mechanism 43, and the ultrasonic cleaning mechanism 43 is arranged in the immersion tank 13.

[0045] It can be seen from the above description that the de-plating cleaning device has a good cleaning effect on glass and can effectively remove the film layer after the glass is de-plated.

[0046] Furthermore, the first detergent cleaning mechanism, the second detergent cleaning mechanism and the pure water scrubbing mechanism 46 all include multiple cleaning spray groups 5 and multiple first roller brush assemblies 6. The multiple cleaning spray groups 5 are arranged in sequence along the transmission direction of the transmission mechanism 2. The first roller brush assembly 6 is provided between two adjacent cleaning spray groups 5, and the first roller brush assembly 6 is provided in the gap 22. The first roller brush assembly 6 includes an upper roller brush 61 and a lower roller brush 62. A roller brush channel 63 is formed between the upper roller brush 61 and the lower roller brush 62. The cleaning spray group 5 includes a second spray pipe 51 and a third spray pipe 52. The second spray pipe 51 and the third spray pipe 52 are respectively provided on opposite sides of the transmission mechanism 2. The second spray pipe 51 is provided with multiple second fan-shaped nozzles 53, and the third spray pipe 52 is provided with multiple third fan-shaped nozzles 54.

[0047] It can be seen from the above description that the glass de-plating cleaning device can not only clean the glass, but also scrub the glass, and has high cleaning efficiency and good cleaning effect.

[0048] Furthermore, it also includes a drying module 7, which is arranged in the chassis 1, and the cleaning module 4 and the drying module 7 are arranged in sequence along the transmission direction of the transmission mechanism 2. The drying module 7 includes a plurality of wind knife assemblies 71 arranged in sequence along the transmission direction of the transmission mechanism 2, and the wind knife assembly 71 includes a first wind knife member 72 and a second wind knife member 73, and the air outlet of the second wind knife member 73 is arranged opposite to the gap 22.

[0049] As can be seen from the above description, after the glass is cleaned, the drying module 7 dries the glass. After passing through the drying module 7 , the glass can be directly unloaded and packaged, thereby improving the glass processing efficiency.

[0050] Furthermore, it also includes a pre-spray brushing module 8, which is provided in the chassis 1, and the pre-spray brushing module 8 and the stripping module 3 are arranged in sequence along the transmission direction of the transmission mechanism 2, and the pre-spray brushing module 8 includes a pre-spray mechanism 81 and a second roller brush assembly 82 arranged in sequence along the transmission direction of the transmission mechanism 2, and the pre-spray mechanism 81 includes a fourth spray pipe 83 and a fifth spray pipe 84, and the fourth spray pipe 83 and the fifth spray pipe 84 are respectively provided on the opposite sides of the transmission mechanism 2, and a plurality of fourth fan-shaped nozzles 85 are provided on the fourth spray pipe 83, and a plurality of fifth fan-shaped nozzles 86 are provided on the fifth spray pipe 84.

[0051] As can be seen from the above description, the pre-spraying and brushing module 8 can perform a pre-cleaning process on the glass, spraying and brushing to remove dust and dirt on the glass, so as to improve the efficiency and effect of subsequent glass stripping.

[0052] Furthermore, the transmission mechanism 2 also includes multiple pressure roller shafts 23, and the multiple pressure roller shafts 23 are arranged in a one-to-one correspondence with the multiple transmission roller shafts. The transmission roller is provided with multiple stop wheels 24 along its axial direction, and a transmission channel 25 is formed between two adjacent stop wheels 24. The first fan-shaped nozzle 34 is arranged corresponding to the transmission channel 25.

[0053] It can be seen from the above description that the glass stripping and cleaning device provided by the present invention can ensure the reliability of spraying the stripping liquid on the glass.

[0054] Furthermore, it also includes an air cutting component 9, which is arranged in the chassis 1 and between the deplating module 3 and the cleaning module 4.

[0055] As can be seen from the above description, the wind-cutting element can blow away the chemicals on the glass.

[0056] Another object of the present invention is to provide a glass de-plating cleaning method, which is implemented by using the above-mentioned glass de-plating cleaning device, and the glass de-plating cleaning method comprises:

[0057] The conveying mechanism 2 conveys the glass to the stripping station, and the first stripping spray assembly 31 and the second stripping spray assembly 32 of the stripping module 3 of the stripping station spray stripping chemicals on opposite sides of the glass respectively;

[0058] The conveying mechanism 2 conveys the glass to the cleaning station, and the cleaning module 4 of the cleaning station cleans the glass.

[0059] As can be seen from the above description, the glass de-plating cleaning method provided by the present invention is implemented based on the above-mentioned glass de-plating cleaning device, which can improve the degree of automation of glass de-plating cleaning and improve the efficiency and effect of glass de-plating.

[0060] Example 1

[0061] Please refer to Figures 1 to 7 A first embodiment of the present invention provides a glass stripping and cleaning method, comprising a chassis 1 and a transmission mechanism 2, a stripping module 3, and a cleaning module 4 disposed in the chassis 1. The stripping module 3 includes a first stripping spray assembly 31 and a second stripping spray assembly 32. The first stripping spray assembly 31 and the second stripping spray assembly 32 are respectively disposed on opposite sides of the transmission mechanism 2. The transmission mechanism 2 includes a plurality of transmission rollers 21. A gap 22 is defined between two adjacent transmission rollers 21. The first stripping spray assembly 31 and the second stripping spray assembly 32 each include a plurality of first spray pipes 33 sequentially disposed along a transmission direction of the transmission mechanism 2. The first spray pipes 33 are provided with a plurality of first fan-shaped nozzles 34. The first spray pipes 33 are disposed corresponding to the gaps 22.

[0062] For details, please refer to Figure 3 In this embodiment, the stripping module 3 includes a first stripping spray mechanism 35 and a second stripping spray mechanism 36. The first stripping spray mechanism 35 and the second stripping spray mechanism 36 are sequentially arranged along the transport direction of the transport mechanism 2. The first stripping spray mechanism 35 and the second stripping spray mechanism 36 each include a first stripping spray assembly 31 and a second stripping spray assembly 32. The first stripping spray mechanism 35 and the second stripping spray mechanism 36 can both spray the coating solution onto both sides of the glass to ensure that the stripping solution fully reacts with both sides of the glass. In this embodiment, the first stripping spray mechanism 35 and the second stripping spray mechanism 36 can respectively spray the first stripping agent and the second stripping agent onto the glass to meet the requirements of the stripping process and improve the stripping effect.

[0063] In this embodiment, the chassis 1 is provided with a first liquid receiving trough 11 and a second liquid receiving trough 12 corresponding to the first stripping spray mechanism 35 and the second stripping spray mechanism, respectively, to receive the stripping agent after spraying, and a partition is provided between the first liquid receiving trough 11 and the second liquid receiving trough 12 to isolate the first stripping agent from the second stripping agent. The stripping agent after spraying may contain a film layer removed from the glass. In this embodiment, the stripping module 3 also includes a first filter drum device 37 and a second filter drum device 38. The first filter drum device 37 is connected to the first liquid receiving trough 11, and the second filter drum device 38 is connected to the second liquid receiving trough 12. The filter drum device is used to filter the stripped film layer; it is mainly used to filter the film layer that flows back into the liquid receiving trough to prevent clogging of the water pump and filter, which affects the stripping effect.

[0064] Specifically, in this embodiment, the nozzle of the first fan-shaped nozzle 34 is tilted relative to the vertical direction to enhance the effectiveness of the stripping agent sprayed onto the glass, allowing the stripping agent to more fully react with the glass. Preferably, the angle ∠a between the nozzle of the first fan-shaped nozzle 34 and the vertical direction is not less than 25°.

[0065] Please refer to Figure 1 In this embodiment, the cleaning device includes a first flushing mechanism 41, a first detergent cleaning mechanism 42, an ultrasonic cleaning mechanism 43, a second detergent cleaning mechanism 44, a second flushing mechanism 45, a pure water scrubbing mechanism 46, and a pure water rinsing mechanism 47, which are sequentially arranged along the conveying direction of the conveying mechanism 2. The chassis 1 is provided with an immersion tank 13 corresponding to the ultrasonic cleaning mechanism 43, and the ultrasonic cleaning mechanism 43 is disposed within the immersion tank 13. The cleaning device in this embodiment performs multiple cleaning steps on the stripped glass to improve the glass cleaning effect. It can efficiently clean the glass and remove the film layer on the glass.

[0066] For details, please refer to Figure 5 The first detergent cleaning mechanism, the second detergent cleaning mechanism and the pure water scrubbing mechanism 46 all include multiple cleaning spray groups 5 and multiple first roller brush assemblies 6. The multiple cleaning spray groups 5 are arranged in sequence along the transmission direction of the transmission mechanism 2. A first roller brush assembly 6 is provided between two adjacent cleaning spray groups 5, and the first roller brush assembly 6 is provided in the gap 22. The first roller brush assembly 6 includes an upper roller brush 61 and a lower roller brush 62. A roller brush channel 63 is formed between the upper roller brush 61 and the lower roller brush 62. The cleaning spray group 5 includes a second spray pipe 51 and a third spray pipe 52. The second spray pipe 51 and the third spray pipe 52 are respectively arranged on opposite sides of the transmission mechanism 2. A plurality of second fan-shaped nozzles 53 are provided on the second spray pipe 51, and a plurality of third fan-shaped nozzles 54 are provided on the third spray pipe 52.

[0067] In this embodiment, the five cleaning spraying groups of the first detergent cleaning mechanism spray the first detergent onto the glass, the five cleaning spraying groups of the second detergent cleaning mechanism spray the second detergent onto the glass, and the pure water scrubbing mechanism 46 sprays pure water onto the glass. The first detergent cleaning mechanism, the second detergent cleaning mechanism, and the pure water scrubbing mechanism 46 are all capable of simultaneously spraying and scrubbing the glass, effectively removing the film layer on the glass after de-plating.

[0068] For more details, please refer to Figure 9 (a) The bristles of the upper roller brush 61 and the lower roller brush 62 are inclined at 45 degrees to the axial direction of the upper roller brush 61 and the axial direction of the lower roller brush 62, and the bristles of the upper roller brush 61 and the lower roller brush 62 are inclined in opposite directions; or, please refer to Figure 9 (b) The bristles of the upper roller brush 61 and the lower roller brush 62 are arranged at a 90° angle relative to the axial direction of the upper roller brush 61 and the axial direction of the lower roller brush 62, respectively. In this embodiment, the multiple first roller brush assemblies 6 can respectively use a variety of upper roller brushes 61 and lower roller brushes 62. This can improve the cleaning effect and film removal effect of the glass by using a variety of different roller brush assemblies to ensure that every part of the glass is brushed.

[0069] Please refer to Figures 6 and 7 In this embodiment, the glass de-plating cleaning device further comprises a drying module 7 and a pre-spraying and brushing module 8. The drying module 7 is arranged in the chassis 1. The cleaning module 4 and the drying module 7 are arranged in sequence along the transmission direction of the transmission mechanism 2. The drying module 7 comprises a plurality of air knife assemblies 71 arranged in sequence along the transmission direction of the transmission mechanism 2. The air knife assembly 71 comprises a first air knife member 72 and a second air knife member 73. The air outlet of the second air knife member 73 is arranged facing the gap 22. The pre-spraying and brushing module 8 is arranged in the chassis 1. The pre-spraying and brushing module 8 The rinsing and brushing module 8 and the stripping module 3 are arranged in sequence along the transmission direction of the transmission mechanism 2. The pre-spraying and brushing module 8 includes a pre-spraying mechanism 81 and a second roller brush assembly 82 arranged in sequence along the transmission direction of the transmission mechanism 2. The pre-spraying mechanism 81 includes a fourth spray pipe 83 and a fifth spray pipe 84. The fourth spray pipe 83 and the fifth spray pipe 84 are respectively arranged on opposite sides of the transmission mechanism 2. A plurality of fourth fan-shaped nozzles 85 are provided on the fourth spray pipe 83, and a plurality of fifth fan-shaped nozzles 86 are provided on the fifth spray pipe 84.

[0070] Please refer to Figure 8 In this embodiment, the transmission mechanism 2 also includes a plurality of pressure roller shafts 23, and the plurality of pressure roller shafts 23 are arranged in a one-to-one correspondence with the plurality of transmission roller shafts. The transmission roller is provided with a plurality of stop wheels 24 along its axial direction, and a transmission channel 25 is formed between two adjacent stop wheels 24. The first fan-shaped nozzle 34 is arranged corresponding to the transmission channel 25.

[0071] In this embodiment, wind cutting parts 9 are provided before the pre-spray brushing module 8, between the pre-spray brushing module 8 and the first stripping brushing mechanism, between the second spray brushing mechanism and the first flushing mechanism 41, between the first flushing mechanism 41 and the first detergent cleaning mechanism, between the ultrasonic cleaning mechanism 43 and the second detergent cleaning mechanism, and between the second detergent cleaning mechanism and the second flushing mechanism 45 to blow away the chemicals or water on the glass in the previous process.

[0072] The glass de-plating cleaning device provided in this embodiment can be used to implement the following glass de-plating cleaning method, which includes:

[0073] The conveying mechanism 2 conveys the glass to the stripping station, and the first stripping spray assembly 31 and the second stripping spray assembly 32 of the stripping module 3 of the stripping station spray stripping chemicals on opposite sides of the glass respectively;

[0074] The conveying mechanism 2 conveys the glass to the cleaning station, and the cleaning module 4 of the cleaning station cleans the glass.

[0075] In detail, the above-mentioned conveying mechanism 2 conveys the glass to the stripping station, and the first stripping spray assembly 31 and the second stripping spray assembly 32 of the stripping module 3 of the stripping station spray stripping chemicals on opposite sides of the glass respectively, specifically including:

[0076] The conveying mechanism 2 conveys the glass to the first spraying mechanism, and the first spraying component of the first spraying mechanism and the second spraying component of the first spraying mechanism respectively spray the first stripping chemical agent on the opposite sides of the glass; the conveying mechanism 2 conveys the glass to the second spraying mechanism, and the first spraying component of the second spraying mechanism and the second spraying component of the second spraying mechanism respectively spray the second stripping chemical agent on the opposite sides of the glass.

[0077] The above-mentioned conveying mechanism 2 conveys the glass to the cleaning station, and the cleaning module 4 of the cleaning station cleans the glass, specifically including:

[0078] The conveying mechanism 2 conveys the glass to the first flushing mechanism 41, which sprays pure water on the glass.

[0079] The conveying mechanism 2 conveys the glass to the first detergent cleaning mechanism, the cleaning spray assembly 5 of the first detergent cleaning mechanism sprays the first detergent on the glass, and the first roller brush assembly 6 of the first detergent cleaning mechanism brushes the glass;

[0080] The conveying mechanism 2 conveys the glass to the ultrasonic cleaning mechanism 43, and the glass is immersed in the soaking agent in the soaking tank 13. The ultrasonic cleaning mechanism 43 generates ultrasonic waves to the soaking agent to ultrasonically clean the glass in the soaking agent.

[0081] The conveying mechanism 2 conveys the glass to the second detergent cleaning mechanism, the cleaning spray assembly 5 of the second detergent cleaning mechanism sprays the second detergent on the glass, and the first roller brush assembly 6 of the second detergent cleaning mechanism brushes the glass;

[0082] The conveying mechanism 2 conveys the glass to the second flushing mechanism 45, which sprays pure water on the glass.

[0083] The conveying mechanism 2 conveys the glass to the pure water scrubbing mechanism 46 , the cleaning spray group 5 of the pure water scrubbing mechanism 46 sprays pure water on the glass, and the first roller brush assembly 6 of the pure water scrubbing mechanism 46 scrubs the glass;

[0084] The conveying mechanism 2 conveys the glass to the pure water washing mechanism 47 , and the pure water washing mechanism 47 sprays pure water on the glass.

[0085] The glass de-plating and cleaning device provided in this embodiment can realize the automatic de-plating and cleaning function for glass, without the need for manual movement of the glass during this process, and the device can ensure the de-plating and cleaning effects on both sides of the glass, and can ensure the effect of cleaning and removing the film layer on both sides of the glass.

[0086] In summary, the present invention designs a glass de-plating cleaning device, which can spray de-plating chemicals on both sides of the glass through the first de-plating spray component 31 and the second de-plating spray component 32 to ensure that both sides of the glass can achieve a preset de-plating effect. In addition, the glass de-plating mechanism does not require manual handling of the glass. The glass de-plating cleaning device has high de-plating efficiency and good de-plating effect.

[0087] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent transformations made using the contents of the description and drawings of the present invention, or directly or indirectly applied in the relevant technical field, are also included in the patent protection scope of the present invention.

Claims

1. A glass de-plating cleaning device, characterized in that: The invention comprises a chassis and a transmission mechanism, a stripping module and a cleaning module arranged in the chassis, the stripping module comprising a first stripping spray assembly and a second stripping spray assembly, the first stripping spray assembly and the second stripping spray assembly being respectively arranged on opposite sides of the transmission mechanism, the transmission mechanism comprising a plurality of transmission rollers, and a gap being provided between two adjacent transmission rollers, the first stripping spray assembly and the second stripping spray assembly both comprising a plurality of first spray pipes arranged in sequence along the transmission direction of the transmission mechanism, the first spray pipes being provided with a plurality of first fan-shaped nozzles, and the first spray pipes being arranged corresponding to the gaps.

2. The glass de-plating cleaning device according to claim 1, characterized in that: The stripping module includes a first stripping spray mechanism and a second stripping spray mechanism. The first stripping spray mechanism and the second stripping spray mechanism are arranged in sequence along the transmission direction of the transmission mechanism. The first stripping spray mechanism and the second stripping spray mechanism both include the first stripping spray component and the second stripping spray component.

3. The glass de-plating cleaning device according to claim 2, characterized in that: The stripping module also includes a first filter drum device and a second filter drum device, the chassis includes a first liquid receiving tank and a second liquid receiving tank, a partition is provided between the first liquid receiving tank and the second liquid receiving tank, the first stripping spray mechanism is provided in the first liquid receiving tank, the second stripping spray mechanism is provided in the second liquid receiving tank, the first filter drum device is connected to the first liquid receiving tank, and the second filter drum device is connected to the second liquid receiving tank.

4. The glass de-plating cleaning device according to claim 1, characterized in that: The through direction of the nozzle of the first fan-shaped nozzle is inclined relative to the vertical direction.

5. The glass de-plating cleaning device according to claim 1, characterized in that: The cleaning device includes a first flushing mechanism, a first detergent cleaning mechanism, an ultrasonic cleaning mechanism, a second detergent cleaning mechanism, a second flushing mechanism, a pure water scrubbing mechanism, and a pure water flushing mechanism, which are arranged in sequence along the transmission direction of the transmission mechanism; wherein the chassis is provided with an immersion tank corresponding to the ultrasonic cleaning mechanism, and the ultrasonic cleaning mechanism is arranged in the immersion tank.

6. The glass de-plating cleaning device according to claim 5, characterized in that: The first detergent cleaning mechanism, the second detergent cleaning mechanism and the pure water scrubbing mechanism all include multiple cleaning spray assemblies and multiple first roller brush assemblies. The multiple cleaning spray assemblies are arranged in sequence along the transmission direction of the transmission mechanism. The first roller brush assembly is provided between two adjacent cleaning spray assemblies, and the first roller brush assembly is provided in the gap. The first roller brush assembly includes an upper roller brush and a lower roller brush. A roller brush channel is formed between the upper roller brush and the lower roller brush. The cleaning spray assembly includes a second spray pipe and a third spray pipe. The second spray pipe and the third spray pipe are respectively provided on opposite sides of the transmission mechanism. The second spray pipe is provided with multiple second fan-shaped nozzles, and the third spray pipe is provided with multiple third fan-shaped nozzles.

7. The glass de-plating cleaning device according to claim 1, characterized in that: It also includes a drying module, which is arranged in the chassis. The cleaning module and the drying module are arranged in sequence along the transmission direction of the transmission mechanism. The drying module includes a plurality of wind knife assemblies arranged in sequence along the transmission direction of the transmission mechanism. The wind knife assembly includes a first wind knife member and a second wind knife member. The air outlet of the second wind knife member is arranged opposite to the gap.

8. The glass de-plating cleaning device according to claim 1, characterized in that: It also includes a pre-spray brushing module, which is arranged in the chassis. The pre-spray brushing module and the stripping module are arranged in sequence along the transmission direction of the transmission mechanism. The pre-spray brushing module includes a pre-spray mechanism and a second roller brush assembly arranged in sequence along the transmission direction of the transmission mechanism. The pre-spray mechanism includes a fourth spray pipe and a fifth spray pipe. The fourth spray pipe and the fifth spray pipe are respectively arranged on opposite sides of the transmission mechanism. A plurality of fourth fan-shaped nozzles are provided on the fourth spray pipe, and a plurality of fifth fan-shaped nozzles are provided on the fifth spray pipe.

9. The glass de-plating cleaning device according to claim 1, characterized in that: The transmission mechanism also includes multiple pressure roller shafts, and the multiple pressure roller shafts are arranged in a one-to-one correspondence with the multiple transmission rollers. The transmission rollers are provided with multiple stop wheels along their axial directions, and a transmission channel is formed between two adjacent stop wheels. The first fan-shaped nozzle is arranged corresponding to the transmission channel.

10. The glass de-plating cleaning device according to claim 1, characterized in that: It also includes an air cutting component, which is arranged in the chassis and between the deplating module and the cleaning module.