Environment-friendly and energy-saving automatic glass cleaning machine
By introducing a vacuum cleaner device and drying device with upper and lower adaptive floating mechanisms into the glass automatic cleaning machine, the problem of frequent water changes is solved, and the glass cleaning effect is efficient and water-saving, which is suitable for door and window production lines.
Patent Information
- Application Number
- CN202422360032.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-26
AI Technical Summary
During use, frequent water replacement of existing glass automatic cleaning machines not only makes the operation troublesome and affects the efficiency, but also consumes a lot of water, and the cleaning effect is limited.
A glass vacuum cleaner device with an adaptive floating mechanism is adopted to first vacuum the glass surface, and then brush it through a glass brushing device. Combined with a glass drying device, it reduces the frequency of water use and improves the cleaning efficiency.
The cleaning effect is improved through the vacuum cleaner device, reduce the number of water use, save water use, and improve cleaning efficiency. It is suitable for glass of different thicknesses and is suitable for door and window production lines with glass.
Smart Images

Figure CN223210144U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field of automatic glass washing machines, in particular to an environmentally friendly and energy-saving automatic glass washing machine. Background technology:
[0002] Automatic glass cleaning machine is a device used to clean the glass surface before deep processing such as mirror making, vacuum coating, tempering, hot bending, and insulating glass assembly.
[0003] Most conventional automatic glass washing machines only include a frame, a conveying roller module for conveying glass, and a glass brushing device for brushing the glass with a brush sprayed with water. Since the water in the glass brushing device is recycled, after a certain period of use, the water in the glass brushing device will inevitably become dirty and need to be replaced. Otherwise, the glass cleaning effect will be greatly reduced. Frequent water replacement in the glass brushing device is not only cumbersome to operate and affects the glass cleaning efficiency, but also requires the use of a large amount of water. Utility model content:
[0004] The purpose of this utility model is to provide an environmentally friendly and energy-saving automatic glass cleaning machine to address the shortcomings of the existing technology. It can not only improve the overall cleaning effect of the glass, but also greatly reduce the number of times the water in the glass brushing device is changed, save water, and improve the glass cleaning efficiency. It can be widely used in production lines for doors and windows with glass.
[0005] In order to achieve the above-mentioned purpose, the technical solution adopted by the utility model is: an environmentally friendly and energy-saving automatic glass cleaning machine, including a frame, a conveying roller module, a glass brushing device, and a glass dust suction device for vacuuming the glass before it is sent into the glass brushing device for brushing. The glass dust suction device includes an upper and lower adaptive floating mechanism, an upper dust suction end arranged on the upper and lower adaptive floating mechanism, and a lower dust suction end arranged below the upper dust suction end; the upper dust suction end is used to vacuum the upper surface of the glass; the lower dust suction end is used to vacuum the lower surface of the glass.
[0006] A further improvement to the above scheme is that the upper and lower adaptive floating mechanism includes upper and lower adaptive floating frames arranged on the frame, an adaptive rocker arm hinged on the upper and lower adaptive floating frames, a rocker arm reset mechanism for providing rebound force for the adaptive rocker arm, a rocker arm limiting mechanism for resisting the rebounding adaptive rocker arm, an adaptive rocker seat arranged on the adaptive rocker arm, a lifting roller rotatably arranged at the bottom of the adaptive rocker seat, and an upper dust suction end arranged on the adaptive rocker seat.
[0007] A further improvement to the above solution is that the rocker arm reset mechanism includes a reset torsion spring arranged on the upper and lower adaptive floating frames, one end of the reset torsion spring is connected to the upper and lower adaptive floating frames, and the other end of the reset torsion spring is connected to the adaptive rocker arm.
[0008] A further improvement to the above scheme is that the rocker arm limiting mechanism includes a limiting block arranged on the upper and lower adaptive floating frames, a limiting adjustment bolt threadedly connected to the limiting block, and one end of the limiting adjustment bolt protrudes from the limiting block and abuts against the adaptive rocker arm.
[0009] A further improvement to the above solution is that there are two rows of lifting rollers, the two rows of lifting rollers are respectively located at the front and rear ends of the bottom of the adaptive swing seat, and the upper dust suction end is located between the two rows of lifting rollers.
[0010] A further improvement to the above solution is that the present invention further comprises a glass drying device for drying the glass after being brushed by the glass brushing device.
[0011] The beneficial effects of the utility model are as follows: the utility model provides an environmentally friendly and energy-saving automatic glass cleaning machine, comprising a frame, a conveying roller module, a glass brushing device, and a glass dust suction device for sucking dust from glass before it is fed into the glass brushing device for cleaning. The glass dust suction device comprises an upper and lower adaptive floating mechanism, an upper dust suction end provided on the upper and lower adaptive floating mechanism, and a lower dust suction end provided below the upper dust suction end; the upper dust suction end is used to suck dust from the upper surface of the glass; the lower dust suction end is used to suck dust from the lower surface of the glass;
[0012] The utility model discloses a glass cleaning machine, and the glass cleaning machine is used for cleaning the glass by the glass suction device. The glass cleaning machine is used for cleaning the glass by the glass suction device. The glass cleaning machine is used for cleaning the glass by the glass brushing device. The glass cleaning machine is used for cleaning the glass by the glass suction device. The glass cleaning machine is used for cleaning the glass by the glass brushing device. Description of the drawings:
[0013] Figure 1 It is a structural diagram of the present utility model.
[0014] Figure 2 for Figure 1 Enlarged view of point A in the middle.
[0015] Explanation of the accompanying drawings: frame 1, conveying roller module 2, glass brushing device 3, glass dust suction device 4, upper and lower adaptive floating mechanism 41, upper and lower adaptive floating frame 411, adaptive rocker arm 412, rocker arm reset mechanism 413, reset torsion spring 4131, rocker arm limiting mechanism 414, limit block 4141, limit adjustment bolt 4142, adaptive rocker seat 415, lifting roller 416, upper dust suction end 42, lower dust suction end 43, glass drying device 5. Specific implementation method:
[0016] The present invention will be further described below with reference to the accompanying drawings. Figure 1-2 As shown, the present invention includes a frame 1, a conveying roller module 2, a glass brushing device 3, and a glass dust suction device 4 for sucking dust from the glass before it is sent into the glass brushing device 3 for brushing. The glass dust suction device 4 includes an upper and lower adaptive floating mechanism 41, an upper dust suction end 42 arranged on the upper and lower adaptive floating mechanism 41, and a lower dust suction end 43 arranged below the upper dust suction end 42; the upper dust suction end 42 is used to suck dust from the upper surface of the glass; the lower dust suction end 43 is used to suck dust from the lower surface of the glass; compared with the existing traditional automatic glass cleaning machine, the present invention first sucks dust from the surface of the glass through the glass dust suction device 4, and then brushes the glass through the glass brushing device 3, which can improve the overall cleaning effect of the glass. The device 4 sucks away the dust on the glass surface. When the glass brushing device 3 is brushing the glass, there is not so much dust on the glass, that is, the glass is not so dirty, so the number of times the water in the glass brushing device 3 is changed can be greatly reduced, water can be saved, and the glass cleaning efficiency can be improved. It can be widely applied to production lines of doors and windows with glass; if the upper dust suction end 42 is set at a height that is too low, some thicker glasses cannot pass through smoothly, and if the upper dust suction end 42 is set at a height that is too high, the dust suction effect is poor. The utility model can make the upper dust suction end 42 float up and down adaptively through the setting of the upper and lower adaptive floating mechanism 41, so that the upper dust suction end 42 can be set at a more appropriate height position when dusting the upper surface of glass of different thicknesses, which is more practical.
[0017] The upper and lower adaptive floating mechanism 41 includes an upper and lower adaptive floating frame 411 provided on the frame 1, an adaptive swing rod 412 hinged on the upper and lower adaptive floating frame 411, a swing rod reset mechanism 413 for providing a rebound force for the adaptive swing rod 412, a swing rod limiting mechanism 414 for resisting the rebounding adaptive swing rod 412, an adaptive swing seat 415 provided on the adaptive swing rod 412, and a lifting roller 416 rotatably provided at the bottom of the adaptive swing seat 415. The upper dust collecting end 42 is provided on the adaptive swing seat 415. When the glass When it moves to the position below the adaptive swing seat 415, the glass pushes the lifting roller 416 upward, the adaptive swing arm 412 rotates obliquely upward, the upper dust suction end 42 adaptively rises upward and vacuums the upper surface of the glass, and the lower dust suction end 43 vacuums the lower surface of the glass. When the glass passes the position below the adaptive swing seat 415, the glass stops pushing the lifting roller 416 upward, and the adaptive swing arm 412 rotates obliquely downward and resets under the action of the rebound force of the swing arm reset mechanism 413, thereby better realizing the vacuuming of glass of different thicknesses.
[0018] The rocker arm reset mechanism 413 includes a reset torsion spring 4131 arranged on the upper and lower adaptive floating frames 411, one end of the reset torsion spring 4131 is connected to the upper and lower adaptive floating frames 411, and the other end of the reset torsion spring 4131 is connected to the adaptive rocker arm 412; the reset torsion spring 4131 generates a torsion force opposite to the glass pushing the lifting roller 416, so that the lifting roller 416 can always press against the surface of the glass, so that the upper dust suction end 42 can maintain a better dust suction height position when dusting glasses of different thicknesses.
[0019] The rocker arm limiting mechanism 414 includes a limiting block 4141 arranged on the upper and lower adaptive floating frames 411, and a limiting adjustment bolt 4142 threadedly connected to the limiting block 4141. One end of the limiting adjustment bolt 4142 protrudes from the limiting block 4141 and abuts against the adaptive rocker arm 412. By adjusting the limiting adjustment bolt 4142 forward or reversely, the length of the limiting adjustment bolt 4142 protruding from the limiting block 4141 can be adjusted, that is, the position at which the adaptive rocker arm 412 abuts can be adjusted, so that the limiting position of the adaptive rocker arm 412 can be adjusted according to specific usage conditions, that is, the limiting position of the lifting roller 416 can be adjusted according to specific usage conditions, which is more practical.
[0020] There are two rows of lifting rollers 416 , which are respectively located at the front and rear ends of the bottom of the adaptive swing seat 415 , and the upper dust suction end 42 is located between the two rows of lifting rollers 416 .
[0021] The present invention also includes a glass drying device 5 for drying the glass after being brushed by the glass brushing device 3. The glass drying device 5 dries the glass after being brushed by the glass brushing device 3 to prevent water stains and watermarks from remaining, thereby better ensuring the cleaning effect of the glass.
[0022] Working principle:
[0023] The glass to be cleaned is placed on the conveying roller module 2, and the glass passes through the glass dust suction device 4, the glass brushing device 3, and the glass drying device 5 in sequence. When the glass is conveyed to the position of the glass dust suction device 4, the upper dust suction end 42 of the glass dust suction device 4 vacuums the upper surface of the glass, and the lower dust suction end 43 of the glass dust suction device 4 vacuums the lower surface of the glass. When the glass after being vacuumed by the glass dust suction device 4 is conveyed to the position of the glass brushing device 3, the glass brushing device 3 brushes the glass. When the glass after being brushed by the glass brushing device 3 is conveyed to the position of the glass drying device 5, the glass drying device 5 dries the glass, completing the entire glass cleaning process. The utility model can not only improve the overall cleaning effect of the glass, but also greatly reduce the number of times the water in the glass brushing device 3 is changed, save water, and improve the glass cleaning efficiency. It can be widely applied to production lines for doors and windows with glass.
[0024] Of course, the above is only a preferred embodiment of the present invention, so all equivalent changes or modifications made according to the structure, features and principles described in the scope of the present invention patent application are included in the scope of the present invention patent application.
Claims
1. An environmentally friendly and energy-saving automatic glass cleaning machine, comprising a frame (1), a conveying roller module (2), and a glass brushing device (3), characterized in that: The invention also includes a glass dust suction device (4) for sucking dust from glass before it is sent to the glass brushing device (3) for brushing. The glass dust suction device (4) includes an upper and lower adaptive floating mechanism (41), an upper dust suction end (42) arranged on the upper and lower adaptive floating mechanism (41), and a lower dust suction end (43) arranged below the upper dust suction end (42); the upper dust suction end (42) is used to suck dust from the upper surface of the glass; and the lower dust suction end (43) is used to suck dust from the lower surface of the glass.
2. The environmentally friendly and energy-saving automatic glass cleaning machine according to claim 1, characterized in that: The upper and lower adaptive floating mechanism (41) comprises an upper and lower adaptive floating frame (411) arranged on the frame (1), an adaptive swing rod (412) hinged on the upper and lower adaptive floating frame (411), a swing rod reset mechanism (413) for providing a rebound force to the adaptive swing rod (412), a swing rod limiting mechanism (414) for resisting the rebounding adaptive swing rod (412), an adaptive swing seat (415) arranged on the adaptive swing rod (412), and a lifting roller (416) rotatably arranged at the bottom of the adaptive swing seat (415); and the upper dust suction end (42) is arranged on the adaptive swing seat (415).
3. The environmentally friendly and energy-saving automatic glass cleaning machine according to claim 2, characterized in that: The rocker arm reset mechanism (413) comprises a reset torsion spring (4131) arranged on the upper and lower adaptive floating frames (411), one end of the reset torsion spring (4131) is connected to the upper and lower adaptive floating frames (411), and the other end of the reset torsion spring (4131) is connected to the adaptive rocker arm (412).
4. The environmentally friendly and energy-saving automatic glass cleaning machine according to claim 2, characterized in that: The swing arm limiting mechanism (414) comprises a limiting block (4141) provided on the upper and lower adaptive floating frames (411), a limiting adjustment bolt (4142) threadedly connected to the limiting block (4141), and one end of the limiting adjustment bolt (4142) protrudes from the limiting block (4141) and abuts against the adaptive swing arm (412).
5. The environmentally friendly and energy-saving automatic glass cleaning machine according to claim 2, characterized in that: There are two rows of lifting rollers (416), which are respectively located at the front and rear ends of the bottom of the adaptive swing seat (415), and the upper dust suction end (42) is located between the two rows of lifting rollers (416).
6. An environmentally friendly and energy-saving automatic glass cleaning machine according to any one of claims 1 to 5, characterized in that: It also includes a glass drying device (5) for drying the glass after being brushed by the glass brushing device (3).