A cleaning device for glass production
Patent Information
- Application Number
- CN202522169696.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-14
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-10-14
AI Technical Summary
[0005]本实用新型提供一种玻璃生产用清洗装置,解决了现有装置的清洁单元与玻璃的对位及接触适配性较差,无法自适应的调节清理部件位置的问题
[0013] This utility model provides a cleaning device for glass production. To improve the cleaning effect during the glass cleaning process, the device utilizes an adaptive cleaning component and a dynamic driven component in conjunction. The adaptive cleaning component's overall synchronous lifting and lowering, achieved through the coordinated movement of the driving lifting and lowering mechanism and the dynamic driven components at both ends, avoids uneven cleaning caused by localized component displacement. This ensures accurate alignment between the component and the glass surface. The adaptive cleaning component, moving synchronously, can elastically contact the inner wall of the glass during transport, automatically adapting to glass thickness fluctuations. It maintains stable contact pressure without manual adjustment, preventing both excessive pressure from scratching the glass and insufficient pressure from leaving impurities. This adapts to the cleaning needs of glass of different specifications.
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Figure CN224763865U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glass cleaning technology, and in particular to a cleaning device for glass production. Background Technology
[0002] In the production of architectural glass, electronic glass, and photovoltaic glass, impurities such as dust, oil, and grinding residue on the glass surface directly affect the precision of subsequent processes such as coating, lamination, and cutting, as well as the quality of the finished product. Therefore, the cleaning process is a core link in the glass production chain.
[0003] The existing cleaning components such as brushes and spray heads are mostly designed with fixed lengths or fixed heights. When dealing with glass of different thicknesses or widths, it is necessary to manually disassemble and replace the cleaning components with the corresponding specifications, or adjust the height through a cumbersome screw. This is not only time-consuming, but also has low precision due to the low alignment of the cleaning components with the glass surface, resulting in missed cleaning at the edges or excessive friction and scratches on the glass in the middle.
[0004] Therefore, it is necessary to provide a cleaning apparatus for glass production to solve the above-mentioned technical problems. Utility Model Content
[0005] This invention provides a cleaning device for glass production, which solves the problem that the existing devices have poor alignment and contact compatibility between the cleaning unit and the glass, and cannot adaptively adjust the position of the cleaning components.
[0006] To solve the above-mentioned technical problems, the present invention provides a cleaning device for glass production, comprising: a conveying assembly, a driving cleaning assembly installed on the top of the conveying assembly, adaptive cleaning assemblies provided at both ends of the driving cleaning assembly, the adaptive cleaning assemblies being used for cleaning the glass on the inner wall of the conveying assembly, a dynamic driven assembly installed on the inner wall of the driving cleaning assembly and the adaptive cleaning assembly, the dynamic driven assembly being used for driving the adaptive cleaning assembly, and a circulating collection assembly installed at the bottom of the driving cleaning assembly.
[0007] Preferably, the conveying assembly includes a support structure, a first driving member is installed on the side end of the support structure, driven members are installed on the inner wall of the support structure, a conveyor belt is installed on the output end of the first driving member, and a transmission structure is connected to the inner wall of the output end of the first driving member.
[0008] Preferably, the drive cleaning assembly includes a support frame, a second drive component is mounted on the top of the support frame, and a spraying structure is mounted on the output end of the second drive component. The spraying structure is used to spray and clean the glass on the inner wall of the assembly.
[0009] Preferably, the adaptive cleaning component includes a guide frame, an extension mounting structure that slides on the inner wall of the guide frame, an elastic support member installed at the bottom of the guide frame for elastic support of the extension mounting structure, a cleaning structure installed on the inner wall of the extension mounting structure at the left end, and a wiping structure installed on the inner wall of the extension mounting structure at the right end. The cleaning structure and the wiping structure are used for cleaning the glass on the inner wall of the conveying component, and an elastic reset member is installed on the inner wall of both the cleaning structure and the wiping structure.
[0010] Preferably, the dynamic driven component includes a positioning structure and a fixed plate structure. The positioning structure is installed on the inner walls of both ends of the driving cleaning component, and a positioning element is installed on the inner wall of the positioning structure. The fixed plate structure is installed on the inner walls of both ends of the adaptive cleaning component. The positioning structure, in conjunction with the fixed plate structure, can be used for the transmission positioning of the adaptive cleaning component.
[0011] Preferably, the circulating collection assembly includes a collection structure and a circulation structure. A barrier filter screen is installed on the top of the collection structure, and an impurity collection structure is installed on the side of the collection structure. The impurity collection structure is used to collect impurities from the inner wall of the barrier filter screen. A delivery pipe is installed at the output end of the circulation structure.
[0012] Compared with related technologies, the cleaning device for glass production provided by this utility model has the following advantages:
[0013] This utility model provides a cleaning device for glass production. To improve the cleaning effect during the glass cleaning process, the device utilizes an adaptive cleaning component and a dynamic driven component in conjunction. The adaptive cleaning component's overall synchronous lifting and lowering, achieved through the coordinated movement of the driving lifting and lowering mechanism and the dynamic driven components at both ends, avoids uneven cleaning caused by localized component displacement. This ensures accurate alignment between the component and the glass surface. The adaptive cleaning component, moving synchronously, can elastically contact the inner wall of the glass during transport, automatically adapting to glass thickness fluctuations. It maintains stable contact pressure without manual adjustment, preventing both excessive pressure from scratching the glass and insufficient pressure from leaving impurities. This adapts to the cleaning needs of glass of different specifications. Attached Figure Description
[0014] Figure 1 A schematic diagram of a preferred embodiment of a cleaning device for glass production provided by this utility model;
[0015] Figure 2 for Figure 1 The diagram shows the structure of the drive cleaning assembly.
[0016] Figure 3 for Figure 1 The diagram shows the structure of the conveyor belt.
[0017] Figure 4 for Figure 1 The diagram shows the structure of the wiping mechanism.
[0018] Figure 5 for Figure 1 The diagram shows a schematic of the loop structure.
[0019] The diagram is labeled as follows: 1. Conveying assembly, 11. Support structure, 12. First driving component, 13. Driven component, 14. Conveyor belt, 15. Transmission structure, 2. Drive cleaning assembly, 21. Support frame, 22. Control structure, 23. Second driving component, 24. Spraying structure, 3. Adaptive cleaning assembly, 31. Guide frame, 32. Extension installation structure, 33. Elastic support component, 34. Cleaning structure, 35. Wiping structure, 36. Elastic reset component, 4. Dynamic driven assembly, 41. Positioning structure, 42. Positioning component, 43. Fixed plate structure, 5. Circulation collection assembly, 51. Collection structure, 52. Barrier filter, 53. Impurity collection structure, 54. Circulation structure, 55. Conveying pipe. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Please refer to the following: Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 ,in, Figure 1 A schematic diagram of a preferred embodiment of a cleaning device for glass production provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the drive cleaning assembly. Figure 3 for Figure 1 The diagram shows the structure of the conveyor belt. Figure 4 for Figure 1 The diagram shows the structure of the wiping mechanism.
[0022] Figure 5 for Figure 1 The diagram shows a schematic of the circulating structure. A cleaning device for glass production includes: a conveying assembly 1, a driving cleaning assembly 2 mounted on the top of the conveying assembly 1, adaptive cleaning assemblies 3 at both ends of the driving cleaning assembly 2, the adaptive cleaning assemblies 3 being used for cleaning the glass on the inner wall of the conveying assembly 1, a dynamic driven assembly 4 mounted on the inner wall of the driving cleaning assembly 2 and the adaptive cleaning assembly 3, the dynamic driven assembly 4 being used for driving the adaptive cleaning assembly 3, and a circulating collection assembly 5 mounted on the bottom of the driving cleaning assembly 2.
[0023] The conveying assembly 1 includes a support structure 11, a first driving member 12 is installed on the side end of the support structure 11, and driven members 13 are installed on the inner wall of the support structure 11. A conveyor belt 14 is installed at the output end of the first driving member 12, and a transmission structure 15 is connected to the inner wall of the output end of the first driving member 12.
[0024] When cleaning glass, it can be placed directly on the inner wall of the conveyor belt 14. Driven by the first drive unit 12 and driven by the transmission structure 15, the glass can be directly transported.
[0025] The conveying component 1 includes, but is not limited to, belt conveyor components and roller conveyor components; in this embodiment, the conveying component 1 is preferably a belt conveyor component.
[0026] The drive cleaning assembly 2 includes a support frame 21, a second drive component 23 is mounted on the top of the support frame 21, and a spraying structure 24 is mounted on the output end of the second drive component 23. The spraying structure 24 is used to spray and clean the glass on the inner wall of the assembly 1.
[0027] When cleaning the glass, the second drive unit 23 at the top drives the position of the spray structure 24 to rise and fall, thereby spraying and cleaning the glass on the inner wall of the conveying assembly 1, ensuring that the height between the spray structure 24 and the glass is appropriate.
[0028] The drive cleaning component 2 includes, but is not limited to, a hydraulically driven cleaning component and a motor screw driven cleaning component; in this embodiment, the drive cleaning component 2 is preferably a hydraulically driven cleaning component.
[0029] The adaptive cleaning component 3 includes a guide frame 31, an extension mounting structure 32 that slides on the inner wall of the guide frame 31, an elastic support 33 that is installed at the bottom of the guide frame 31, the elastic support 33 that provides elastic support for the extension mounting structure 32, a cleaning structure 34 that is installed on the inner wall of the extension mounting structure 32 at the left end, and a wiping structure 35 that is installed on the inner wall of the extension mounting structure 32 at the right end. The cleaning structure 34 and the wiping structure 35 are used for cleaning the glass on the inner wall of the conveying component 1, and an elastic reset component 36 that is installed on the inner wall of both the cleaning structure 34 and the wiping structure 35.
[0030] With the structural lifting of the driving cleaning component 2 and the structural positioning of the dynamic driven component 4, the extension mounting structure 32 can be slid along the inner wall of the guide frame 31. Subsequently, the cleaning structure 34 and wiping structure 35 on the inner wall of the extension mounting structure 32 will be lifted and lowered synchronously. Under the elastic deformation of the elastic reset member 36, they can stably and accurately contact the inner wall of the glass, thereby performing the driven cleaning process of the glass.
[0031] The adaptive cleaning component 3 includes, but is not limited to, a single cleaning component and a combination of cleaning components; in this embodiment, the adaptive cleaning component 3 preferably uses a combination of cleaning components.
[0032] The dynamic driven component 4 includes a positioning structure 41 and a fixed plate structure 43. The positioning structure 41 is installed on the inner walls of both ends of the driving cleaning component 2. A positioning element 42 is installed on the inner wall of the positioning structure 41. The fixed plate structure 43 is installed on the inner walls of both ends of the adaptive cleaning component 3. The positioning structure 41, in conjunction with the fixed plate structure 43, can be used for the transmission positioning of the adaptive cleaning component 3.
[0033] As the structure of the cleaning component 2 is raised and lowered, the positioning structures 41 at both ends will automatically position themselves on the inner wall of the fixed plate structure 43 as the structure is raised and lowered. Then, with the continuous raising and lowering of the structure, the structure position of the adaptive cleaning component 3 can be synchronously driven to achieve the requirement of convenient cleaning.
[0034] Among them, the dynamic follower component 4 includes, but is not limited to, roller-type dynamic follower and baffle-type dynamic follower; in this embodiment, the dynamic follower component 4 is preferably baffle-type dynamic follower.
[0035] The circulating collection component 5 includes a collection structure 51 and a circulation structure 54. A barrier filter 52 is installed on the top of the collection structure 51, and an impurity collection structure 53 is installed on the side of the collection structure 51. The impurity collection structure 53 is used to collect impurities on the inner wall of the barrier filter 52. A delivery pipe 55 is installed at the output end of the circulation structure 54.
[0036] When cleaning the glass, the circulation structure 54 transports and processes the water inside the collection structure 51, and the barrier filter 52 installed on the inner wall can reduce pipe blockage caused by impurities.
[0037] The circulating collection component 5 includes, but is not limited to, gravity sedimentation type and filtration adsorption type; in this embodiment, the circulating collection component 5 is preferably filtration adsorption type.
[0038] The working principle of the cleaning device for glass production provided by this utility model is as follows:
[0039] When the device cleans the glass, it first places the glass on the inner wall of the conveying component 1 for positional transport. During this transport, the drive cleaning component 2 will lift and lower to spray water from the circulating collection component 5 onto the inner wall of the glass for cleaning. At the same time, when the drive cleaning component 2 lifts and lowers, the dynamic driven component 4 will be positioned and lifted simultaneously. Then, under the positioning and lifting of the dynamic driven component 4, the adaptive cleaning components 3 at both ends will move synchronously to facilitate the cleaning of the glass during transport and reduce the adhesion of impurities.
[0040] Compared with related technologies, the cleaning device for glass production provided by this utility model has the following advantages:
[0041] In the glass cleaning process, to improve the cleaning effect, the adaptive cleaning component 3 and the dynamic driven component 4 work together. By driving the cleaning component 2 to rise and fall, and cooperating with the dynamic driven components 4 at both ends, the adaptive cleaning component 3 can be raised and lowered synchronously as a whole. This avoids uneven cleaning caused by local deviation of the component, and ensures the accurate alignment between the component and the glass surface. The adaptive cleaning component 3 can elastically contact the inner wall of the glass during the conveying process as it rises and falls synchronously. It can automatically adapt to the fluctuation of glass thickness and maintain a stable contact pressure without manual adjustment. This avoids scratching the glass due to excessive pressure and prevents impurities from remaining due to insufficient pressure, thus adapting to the cleaning needs of glass of different specifications.
[0042] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A cleaning apparatus for glass production, characterized in that, include: A conveying assembly is provided, with a driving cleaning assembly mounted on top and adaptive cleaning assemblies at both ends. The adaptive cleaning assemblies are used to clean the glass on the inner wall of the conveying assembly. Dynamic driven assemblies are installed on the inner walls of the driving cleaning assembly and the adaptive cleaning assembly. The dynamic driven assemblies are used to drive the adaptive cleaning assembly. A circulating collection assembly is installed at the bottom of the driving cleaning assembly.
2. The cleaning apparatus for glass production according to claim 1, characterized in that, The conveying assembly includes a support structure, a first driving member is installed on the side end of the support structure, and driven members are installed on the inner wall of the support structure. A conveyor belt is installed on the output end of the first driving member, and a transmission structure is connected to the inner wall of the output end of the first driving member.
3. The cleaning apparatus for glass production according to claim 1, characterized in that, The drive cleaning assembly includes a support frame, a second drive component is mounted on the top of the support frame, and a spraying structure is mounted on the output end of the second drive component. The spraying structure is used to spray and clean the glass on the inner wall of the assembly.
4. A cleaning apparatus for glass production according to claim 1, characterized in that, The adaptive cleaning component includes a guide frame, an extension mounting structure that slides on the inner wall of the guide frame, an elastic support member installed at the bottom of the guide frame for elastic support of the extension mounting structure, a cleaning structure installed on the inner wall of the extension mounting structure at the left end, and a wiping structure installed on the inner wall of the extension mounting structure at the right end. The cleaning structure and the wiping structure are used for cleaning the glass on the inner wall of the conveying component, and elastic reset members are installed on the inner walls of both the cleaning structure and the wiping structure.
5. A cleaning apparatus for glass production according to claim 1, characterized in that, The dynamic driven component includes a positioning structure and a fixed plate structure. The positioning structure is installed on the inner wall of both ends of the driving cleaning component, and a positioning element is installed on the inner wall of the positioning structure. The fixed plate structure is installed on the inner wall of both ends of the adaptive cleaning component. The positioning structure, in conjunction with the fixed plate structure, can be used for the transmission positioning of the adaptive cleaning component.
6. A cleaning apparatus for glass production according to claim 1, characterized in that, The circulating collection assembly includes a collection structure and a circulation structure. A barrier filter screen is installed on the top of the collection structure, and an impurity collection structure is installed on the side of the collection structure. The impurity collection structure is used to collect impurities from the inner wall of the barrier filter screen. A delivery pipe is installed at the output end of the circulation structure.