Rotary glass cleaning machine

By combining roller rinsing and magnetic cleaning clamp components in a rotary glass washing machine, the problems of low efficiency and poor cleaning effect of existing glass washing machines are solved, achieving efficient scrubbing and rotary rinsing of glass surfaces and ensuring the cleaning effect of glass.

CN223669865UActive Publication Date: 2025-12-16QINHUANGDAO LEWEI SCI & TECH DEV CO LTD
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Patent Information

Application Number
CN202422834275.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-12-16
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

Existing glass cleaning machines are inefficient and use only one cleaning method, making it difficult to effectively remove stains from glass surfaces.

Method used

A rotary glass cleaning machine is designed. By setting roller rinsing components and magnetic cleaning clamp components on the inner and outer sides of the adsorption frame assembly, and combining the turnover and rotation characteristics of the adsorption frame, the machine can achieve front and back cleaning and rotary rinsing of the glass body. The machine uses a meshing transmission component to achieve intermittent circumferential rotation and angular deflection of the glass.

Benefits of technology

It improves the efficiency and effectiveness of glass cleaning, achieves efficient cleaning of glass surfaces, and ensures the cleanliness of the glass.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary type glass cleaning machine which comprises a support. The magnetic cleaning clamp assembly and the flushing turnover roller assembly are arranged on the support; the washing turnover roller assembly comprises a mounting base, a roller type washing assembly and an adsorption frame assembly, wherein the roller type washing assembly and the adsorption frame assembly are arranged on the mounting base and distributed inside and outside. The adsorption frame assembly comprises two transmission rings, a plurality of groups of transmission shafts on the opposite surfaces of the two transmission rings, and a placement frame fixed between the two transmission shafts in each group, and a plurality of electromagnetic chucks are arranged in the placement frame; wherein one transmission ring is rotationally connected with the mounting base, and the first meshing transmission assembly is arranged on the other transmission ring. The device further comprises a second meshing transmission assembly. The front and back surfaces of a plurality of glass bodies are scrubbed in a one-to-one mode, meanwhile, rotary washing of the glass bodies is achieved, the cleaning effect of the glass bodies is guaranteed, meanwhile, the glass bodies are continuously and automatically cleaned, and the cleaning efficiency is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass cleaning technical field, concretely is a kind of rotary glass cleaning machine. BACKGROUND

[0002] Glass cleaning machine is the special equipment that glass is cleaned on glass surface before deep processing process such as mirror making, vacuum coating, toughening, heat bending, hollow glass piece, but the glass cleaning machine of prior art is flushed to single glass, and work efficiency is low, and cleaning method is only flushed, and the cleaning effect is poor for the dirt on glass, need to wipe its surface, therefore present and put forward a kind of rotary glass cleaning machine. UTILITY MODEL CONTENTS

[0003] The utility model discloses a kind of rotary glass cleaning machines, the roller type flushing component and magnetic cleaning clamp component of the roller type flushing component and magnetic cleaning clamp component of several adsorption frame assemblies inside and outside are set, the rotation and rotation characteristics of several adsorption frame assemblies are combined, to realize the rotation of several glass bodies one-one front and back scrubbing and realize its rotary flushing, to ensure the cleaning effect of glass body, while the continuous automatic cleaning of several glass bodies, cleaning efficiency is high.

[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of rotary glass cleaning machine, comprising: support;Magnetic cleaning clamp component for the rotary cleaning of several glass bodies is set on the support, flushing turnover roller assembly;Wherein, the flushing turnover roller assembly includes mounting seat, the roller type flushing component distributed inside and outside on the mounting seat and the adsorption frame assembly with turnover function;The adsorption frame assembly includes two transmission rings, and the transmission shaft of several groups is opposite to the two transmission rings, wherein the fixed placement frame between every two transmission shafts, and the several electromagnetic suction cups for the adsorption fixation of single glass body are arranged in it;Wherein one transmission ring is rotatably connected with mounting seat, and first meshing transmission assembly is arranged on another transmission ring;It further includes second meshing transmission assembly, when first meshing transmission assembly drives the intermittent circumferential rotation of several placement frames, second meshing transmission assembly drives single placement frame to rotate by itself, for the tumbling cleaning of glass body on placement frame.

[0005] Preferably, the roller type flushing component includes pipe body fixed in the middle of the mounting seat, and booster hole is annularly opened in the outer periphery of the pipe body, wherein each group of booster holes is provided with several linear distribution;It further includes connecting end head set on the end of the pipe body away from mounting seat, and the connecting end head is connected with external water pipe.

[0006] Preferably, the first mesh transmission assembly comprises a first outer gear ring fixed on the outer periphery of the transmission ring, and a connecting plate fixed on the end of the pipe body away from the mounting base, the bottom of the connecting plate is fixed with a driving component, the output end of the driving component is fixed with an incomplete gear which is engaged with the first outer gear ring.

[0007] Preferably, the second mesh transmission assembly is provided with two groups, each group of the second mesh transmission assembly comprises an annular mounting frame fixed on one end of the pipe body, and a second outer gear ring provided on the outer periphery of each annular mounting frame; and further comprises a transmission gear fixed on each transmission shaft, and the transmission gear is engaged with the second outer gear ring on the corresponding side.

[0008] Preferably, the magnetic cleaning clamp assembly comprises two mounting plates fixed on the upper part of the support, and first rollers rotatably mounted on both ends of the two mounting plates respectively, a first transmission belt is sleeved between the first rollers, one of the first rollers is fixed with the output shaft of a first motor component provided on the side wall of the mounting plate; further comprising a cleaning liquid nozzle provided on the first transmission belt in alignment with the upper glass body, and a telescopic scrubbing head; wherein the telescopic scrubbing head comprises a hydraulic telescopic rod, and a first cleaning plate provided on the telescopic end of the hydraulic telescopic rod, and the first cleaning plate is provided with a first magnetic block in the bottom, and the first cleaning plate is provided with a first cleaning cotton clamped on the top; further comprising a limiting groove opened in the inner edge of each placing frame, and a second cleaning plate provided in the limiting groove, and the second cleaning plate is provided with a second magnetic block which is magnetically attracted to the first magnetic block, and the second cleaning plate is provided with a second cleaning cotton clamped on the top; when the hydraulic telescopic rod is extended towards the glass body placed on the upper position, the first cleaning plate and the second cleaning plate are respectively attached to the upper and lower surfaces of the glass body placed on the upper position.

[0009] Preferably, the cleaning liquid nozzle comprises a liquid storage tank fixed on the first transmission belt, and a nozzle body provided on the bottom of the liquid storage tank, the nozzle body is aligned with the glass body placed on the upper position and located in the forward direction of the starting position of the first cleaning plate.

[0010] Preferably, the sewage tank assembly is provided on the bottom of the support and below the adsorption frame assembly, and comprises a tank body, and a drainage hole in the tank body for drainage.

[0011] Preferably, the conveying belt assembly is further provided, the conveying belt assembly comprises a first mounting frame and a second mounting frame, the first mounting frame and the second mounting frame are provided on both sides of the tank body; and second rollers rotatably mounted on the first mounting frame and the second mounting frame respectively, and a second transmission belt sleeved on the two second rollers, the second transmission belt is placed below the adsorption frame assembly and used for receiving and conveying the cleaned glass body; further comprising a second motor component provided on the side wall of the first mounting frame, and the output shaft of the second motor component passes through the mounting hole opened in the side wall of the first mounting frame and is fixed with the second roller on the first mounting frame.

[0012] Compared with the prior art, the utility model have the advantages that:

[0013] The utility model discloses a first meshing transmission subassembly and second meshing transmission subassembly are set up, and the linkage of two, namely in the first meshing transmission subassembly drives a plurality of placing frame whole intermittent circumferential rotation, cooperation magnetic cleaning clamp subassembly is washed to a plurality of glass body one -by -one while, the second meshing transmission subassembly can utilize the power that the first meshing transmission subassembly brought, realizes the angle deflection of single glass body, and the roller type flushing subassembly is combined to realize the back and forth switching of a plurality of glass body flush surface, further guarantee cleaning effect. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the first perspective three-dimensional structure schematic diagram of the utility model;

[0015] Figure 2 It is the second perspective three-dimensional structure schematic diagram of the utility model;

[0016] Figure 3 It is the front view structure schematic diagram of the utility model;

[0017] Figure 4 It is the utility model amplification structure schematic diagram;

[0018] Figure 5 It is the amplification structure schematic diagram of flushing turnover roller subassembly;

[0019] Figure 6 It is the local amplification structure schematic diagram of magnetic cleaning clamp subassembly.

[0020] In the drawing: 1, sewage tank subassembly;101, tank body;102, drain hole;2, conveying belt subassembly;201, first mounting frame;202, second mounting frame;203, second transmission belt;204, second motor part;3, support;4, magnetic cleaning clamp subassembly;401, mounting plate;402, first transmission belt;403, cleaning liquid spray head;4031, liquid storage tank;4032, spray head body;404, first motor part;405, telescopic scrubbing head;4051, hydraulic telescopic rod;4052, first cleaning plate;4053, first cleaning cotton;4054, second cleaning plate;5, pipe body;6, roller type flushing subassembly;601, booster hole;602, connecting end;7, first meshing transmission subassembly;701, first outer gear ring;702, connecting plate;703, drive part;704, incomplete gear;8, second meshing transmission subassembly;801, annular mounting frame;802, second outer gear ring;803, transmission tooth;10, mounting seat;11, transmission ring;12, transmission shaft;13, placing frame;14, glass body;15, electromagnetic chuck. DETAILED DESCRIPTION

[0021] In the description of the utility model, it needs to understand that the orientation or position relation indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or position relation shown based on the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation on the utility model. The embodiments of the utility model will be described in detail below with reference to the drawings.

[0022] Embodiment 1

[0023] Please refer to Figures 1 to 6 The utility model optimally provides technical schemes: a rotary glass cleaning machine, comprising: a support 3; a magnetic cleaning clamp assembly 4 and a flushing turnover roller assembly for rotary cleaning of a plurality of glass bodies 14 are arranged on the support 3; wherein the flushing turnover roller assembly comprises a mounting seat 10, a roller flushing assembly 6 distributed inside and outside on the mounting seat 10 and an adsorption frame assembly with turnover function; the adsorption frame assembly comprises two transmission rings 11, a plurality of groups of transmission shafts 12 on the opposite surfaces of the two transmission rings 11, wherein a placing frame 13 fixed between each group of two transmission shafts 12 is arranged, a plurality of electromagnetic suction cups 15 arranged inside are used for adsorbing and fixing a single glass body 14; one of the two transmission rings 11 is rotationally connected with the mounting seat 10, and a first meshing transmission assembly 7 is arranged on the other transmission ring 11; the first meshing transmission assembly 7 drives a plurality of placing frames 13 to rotate intermittently in the circumferential direction, and the second meshing transmission assembly 8 drives a single placing frame 13 to rotate by itself, which is used for tumbling and cleaning the glass body 14 on the placing frame 13.

[0024] In the embodiment, the magnetic cleaning clamp assembly 4 and the flushing turnover roller assembly are distributed vertically, and the roller flushing assembly 6 of the flushing turnover roller assembly and the adsorption frame assembly with turnover function are distributed inside and outside, so that when the adsorption frame assembly moves intermittently by turning over, the roller flushing assembly 6 on the inside and the magnetic cleaning clamp assembly 4 on the outside can flush and wipe the plurality of glass bodies 14 placed on the adsorption frame assembly, and the design highlight is that: due to the characteristics of revolution and rotation of the adsorption frame assembly itself, the flushing surface can be switched, so as to ensure the cleanliness of the glass body 14.

[0025] Specifically, as shown in 1, 3, 5, 6, the two transmission rings 11 where the adsorption frame assembly is located, one of the transmission rings 11 is rotatably connected with the fixed mounting seat 10 on the support 3, and the other transmission ring 11 is connected through a plurality of groups of transmission shafts 12 arranged between the two transmission rings 11, and the placement frame 13 between each group of transmission shafts 12 completes the connection of the two transmission rings 11, and a plurality of electromagnetic suction cups 15 on each placement frame 13 are used for adsorbing and fixing the electromagnetic suction cups 15, and the outer wall material of the electromagnetic suction cups 15 is preferably a waterproof material, and the first meshing transmission assembly 7 and the second meshing transmission assembly 8 are linked, that is, the first meshing transmission assembly 7 drives a plurality of placement frames 13 to rotate intermittently in the circumferential direction, and at the same time, the magnetic cleaning clamp assembly 4 wipes each glass body 14, and the second meshing transmission assembly 8 can realize the angular deflection of a single glass body 14 by using the power brought by the first meshing transmission assembly 7, in combination with the roller washing assembly 6, to realize the back-and-forth switching of the washing surface of the plurality of glass bodies 14, and further ensure the cleaning effect.

[0026] In the present application, the roller washing assembly 6 and the magnetic cleaning clamp assembly 4 are arranged on the inner and outer sides of the plurality of adsorption frame assemblies, and the rotation and revolution characteristics of the plurality of adsorption frame assemblies are combined to realize the sequential front and back wiping of the plurality of glass bodies 14 and the rotary washing of the plurality of glass bodies 14, thereby ensuring the cleaning effect of the glass bodies 14, and the plurality of glass bodies 14 are continuously and automatically cleaned, and the cleaning efficiency is high.

[0027] Embodiment 2

[0028] As another embodiment of the present application, the roller washing assembly 6 includes a pipe body 5 fixed in the middle of the mounting seat 10, and a plurality of booster holes 601 arranged in a ring shape on the outer periphery of the pipe body 5, wherein each group of booster holes 601 is arranged in a linear distribution; and a connecting end 602 arranged at one end of the pipe body 5 away from the mounting seat 10, and the connecting end 602 is connected with an external water pipe.

[0029] A plurality of groups of booster holes 601 are arranged in a ring shape on the outer periphery of the pipe body 5, in combination with Figure 6 , and the connecting end 602 is connected with the external water pipe to realize the water spraying process of the plurality of booster holes 601, and Figure 5 It can be seen that the plurality of booster holes 601 are aligned with the plurality of placement frames 13 to realize the washing process of the glass bodies 14 on the plurality of placement frames 13, in combination with the self-rotation process of the glass bodies 14, to realize the repeated washing of the front and back surfaces of the glass bodies 14, thereby ensuring the cleaning effect of the glass bodies 14.

[0030] Further, the first meshing transmission assembly 7 includes a first outer gear ring 701 fixed on the outer periphery of the transmission ring 11, and a connecting plate 702 fixed at one end of the pipe body 5 away from the mounting seat 10, and a drive component 703 fixed at the bottom of the connecting plate 702, and an incomplete gear 704 fixed at the output end of the drive component 703 is engaged with the first outer gear ring 701.

[0031] Combination Figure 5 As shown, the connecting plate 702 is fixed on the tube body 5, and the incomplete gear 704 fixed at the telescopic end of the drive component 703 at its bottom meshes with the first external gear ring 701 on the outer periphery of the transmission ring 11. Therefore, when the incomplete gear 704 rotates, the first external gear ring 701 can be intermittently rotated.

[0032] Furthermore, the second meshing transmission assembly 8 is provided in two sets. Each set of the second meshing transmission assembly 8 includes an annular mounting bracket 801 fixed to one end of the tube body 5, and a second external toothed ring 802 disposed on the outer periphery of each annular mounting bracket 801; it also includes a transmission tooth 803 fixed on each transmission shaft 12, and the transmission tooth 803 meshes with the second external toothed ring 802 on its corresponding side.

[0033] Several sets of transmission shafts 12 are rotatably connected at opposite ends of two transmission rings 11, in combination Figure 5 , 6 As shown, each of the two drive shafts 12 in each group is fixed with a drive tooth 803, and the drive tooth 803 meshes with the second external toothed ring 802 fixed on the tube body 5. Therefore, when the drive ring 11 rotates through the action of the first meshing drive assembly 7, it further drives several drive teeth 803 to rotate along the outer circumference of the second external toothed ring 802, thereby realizing the rotation of several groups of drive shafts 12, and then driving the rotation of the placement frame 13 between each group of drive shafts 12.

[0034] Example 3

[0035] As other embodiments of the utility model, the magnetic cleaning clamp assembly 4 includes two mounting plates 401 fixed on the upper part of the support 3, and the first roller rotatably installed at both ends of the two mounting plates 401, and the first transmission belt 402 is sleeved between the first rollers, one of the first rollers is fixed with the output shaft of the first motor part 404 arranged on the side wall of the mounting plate 401; further comprising a cleaning liquid spray head 403 arranged on the first transmission belt 402 and aligned with the glass body 14 in the upper position, and a telescopic scrubbing head 405; wherein the telescopic scrubbing head 405 includes a hydraulic telescopic rod 4051, and a first cleaning plate 4052 arranged at the telescopic end of the hydraulic telescopic rod 4051, and the first cleaning plate 4052 is provided with a first magnetic block, and the bottom of the first cleaning plate 4052 is clamped with a first cleaning cotton 4053; further comprising a limiting groove opened in the inner edge of each placing frame 13, and a second cleaning plate 4054 arranged in the limiting groove, and the second cleaning plate 4054 is provided with a second magnetic block magnetically attracted to the first magnetic block, and the top of the second cleaning plate 4054 is clamped with a second cleaning cotton; when the hydraulic telescopic rod 4051 is extended towards the glass body 14 in the upper position, the first cleaning plate 4052 and the second cleaning plate 4054 are respectively attached to the upper and lower surfaces of the glass body 14 in the upper position; further, the cleaning liquid spray head 403 includes a liquid storage tank 4031 fixed on the first transmission belt 402, and a spray head body 4032 arranged at the bottom of the liquid storage tank 4031, and the spray head body 4032 is aligned with the glass body 14 in the upper position and located in the advancing direction of the starting position of the first cleaning plate 4052.

[0036] In this application, combined with Figure 3 、 5 , 6 shows that the two placing frames 13 placed on the top and bottom of the adsorption frame assembly are in a horizontal state, and the placing frame 13 in the upper position corresponds to the output end of the cleaning liquid spray head 403 and the telescopic scrubbing head 405 of the magnetic cleaning clamp assembly 4, and the spray head body 4032 of the cleaning liquid spray head 403 is placed in the advancing direction of the starting position of the first cleaning plate 4052, so that when the incomplete gear 704 of the first meshing transmission assembly 7 is separated from the first external tooth ring 701, the adsorption frame assembly as a whole is in a stopped state, at this time, the spray head body 4032 of the cleaning liquid spray head 403 is placed in the advancing direction of the starting position of the telescopic scrubbing head 405, and the cleaning liquid is poured;

[0037] The hydraulic telescopic rod 4051, in which the telescopic scrubbing head 405 is located, is extended, and due to the first cleaning plate 4052 at the bottom of the hydraulic telescopic rod 4051, the first magnetic block arranged in the first cleaning plate 4052 is magnetically attracted to the second magnetic block arranged in the second cleaning plate 4054, so that when the first cleaning plate 4052 approaches the second cleaning plate 4054, the first cleaning cotton 4053 clamped at the bottom of the first cleaning plate 4052 and the second cleaning cotton clamped at the top of the second cleaning plate 4053 are respectively attached to the upper and lower surfaces of the glass body 14, and then the first motor component 404 operates, so that the first transmission belt 402 drives the cleaning liquid nozzle 403 and the telescopic scrubbing head 405 to move horizontally back and forth, and the upper and lower surfaces of the glass body 14 are cleaned.

[0038] When the incomplete gear 704 is re-engaged with the first outer gear ring 701, the transmission ring 11 is rotated, and the plurality of transmission teeth 803 are rotated along the outer periphery of the second outer gear ring 802, so that the rotation of the placement frame 13 between each group of transmission shafts 12 is driven, the positions of the plurality of glass bodies 14 are switched, the cleaning liquid nozzle 403 and the telescopic scrubbing head 405 are switched, and the glass body 14 originally located at the upper position and cleaned by the scrubbing is rotated by the meshing characteristics of the transmission teeth 803 and the second outer gear ring 802, so that the angle of rotation is changed. Figure 1 、 2 , 3, 6, the electromagnetic chuck 15 on which the placement frame 13 is located is controlled to move to the lowermost position of the suction frame assembly, and the glass body 14 on the placement frame 13 is detached.

[0039] It is worth mentioning that the first motor component 404, the second motor component 204, the driving component 703 and the electromagnetic chuck 15 of the device are all mature technologies, and will not be described in detail, and the operation of the device is controlled by the single-chip microcomputer.

[0040] Embodiment 4

[0041] As other embodiments of the present application, the sewage tank assembly 1 is arranged at the bottom of the support 3 and below the suction frame assembly, and includes a tank body 101, a drainage hole 102 in the tank body 101 for drainage, and a sewage tank assembly 1 Figure 1 , to realize the collection of sewage.

[0042] Embodiment 5

[0043] As other embodiments of the utility model, still include conveying belt assembly 2, conveying belt assembly 2 includes first mounting bracket 201, second mounting bracket 202, first mounting bracket 201 with second mounting bracket 202 are arranged at the both sides of box 101, and second roller is rotatably installed on first mounting bracket 201 and second mounting bracket 202 respectively, and the second transmission belt 203 of two second rollers is sleeved, it is placed in the lower of adsorption frame assembly and is used to receive and transport the glass body 14 after cleaning, still include the second motor part 204 of first mounting bracket 201 side wall, and second motor part 204 output shaft passes through the mounting hole of first mounting bracket 201 side wall and is fixed with the second roller on first mounting bracket 201.

[0044] In combination Figure 1 、 2 As shown, the second transmission belt 203 where conveying belt assembly 2 is used to receive and transport the glass body 14 after cleaning, to realize the transfer process of glass body 14.

[0045] In the utility model, unless another explicit provision and limitation, the terms "installation", "connection", "connect", "fix" and other terms should be broad understanding, for example, can be fixed connection, can also be detachable connection, or integrated, detachable installation has multiple ways, for example, can be through the way of plug-in and buckle cooperation, again for example, through the way of bolt connection etc.

[0046] The above embodiment is only used for further illustrating the utility model, and cannot be understood as the limitation of the protection scope of the utility model, the technical engineers in the art make some non-essential improvements and adjustments to the utility model according to the content of the above-mentioned utility model, and all fall within the protection scope of the utility model.

Claims

1. A rotary glass cleaning machine characterized by, The utility model relates to a kind of rotating glass cleaning machines, including: Support (3); Magnetic cleaning clamp assembly (4) for the rotating cleaning of several glass bodies (14) is set on the support (3), flushing turnover roller assembly; Wherein, the flushing turnover roller assembly includes mounting seat (10), roller flushing assembly (6) is distributed in the inside and outside of the mounting seat (10) and is provided with adsorption frame assembly with turnover function; The adsorption frame assembly includes two transmission rings (11), the transmission shaft (12) of several groups on the opposite side of two transmission rings (11), wherein every two transmission shafts (12) between fixedly placed frame (13) are placed, and the electromagnetic suction disc (15) for the adsorption fixation of single glass body (14) is arranged in it; Wherein one of the transmission ring (11) is rotatably connected with mounting seat (10), and first meshing transmission assembly (7) is arranged on another transmission ring (11); It further includes second meshing transmission assembly (8), when first meshing transmission assembly (7) drives several placed frames (13) to rotate intermittently in circumferential direction, the second meshing transmission assembly (8) drives single placed frame (13) to rotate by itself, for the tumbling cleaning of glass body (14) on placed frame (13).

2. The rotating glass cleaning machine according to claim 1, wherein: The roller flushing assembly (6) includes a tube body (5) fixed in the middle of the mounting seat (10), and a plurality of booster holes (601) are linearly distributed around the tube body (5) and are arranged in a ring shape. It further includes a connecting end (602) arranged at one end of the tube body (5) away from the mounting seat (10), and the connecting end (602) is connected to an external water pipe.

3. The rotating glass cleaning machine according to claim 2, wherein: The first meshing transmission assembly (7) includes a first outer gear ring (701) fixed around the transmission ring (11), and a connecting plate (702) fixed at one end of the tube body (5) away from the mounting seat (10), wherein a drive component (703) is fixed at the bottom of the connecting plate (702), and an incomplete gear (704) is fixed at the output end of the drive component (703) and meshes with the first outer gear ring (701).

4. The rotating glass cleaning machine according to claim 2, wherein: The second meshing transmission assembly (8) is provided with two groups, and each group of the second meshing transmission assembly (8) includes a ring-shaped mounting bracket (801) fixed at one end of the tube body (5), and a second outer gear ring (802) arranged around each ring-shaped mounting bracket (801). It further includes a transmission tooth (803) fixed on each transmission shaft (12), and the transmission tooth (803) meshes with the second outer gear ring (802) on its corresponding side.

5. The rotating glass cleaning machine according to claim 1, wherein: The magnetic cleaning clamp assembly (4) comprises two mounting plates (401) fixed on the upper part of the support (3), and first rollers rotatably mounted at the two ends of the two mounting plates (401), respectively, and a first transmission belt (402) sleeved between the first rollers, wherein one of the first rollers is fixed with the output shaft of a first motor component (404) arranged on the side wall of the mounting plate (401); It also comprises a cleaning liquid spray head (403) arranged on the first transmission belt (402) and aligned with the upper glass body (14), and a telescopic scrubbing head (405); The telescopic scrubbing head (405) comprises a hydraulic telescopic rod (4051), and a first cleaning plate (4052) arranged at the telescopic end of the hydraulic telescopic rod (4051), and the first cleaning plate (4052) is provided with a first magnetic block, and the bottom of the first cleaning plate (4052) is clamped with a first cleaning cotton (4053); It also comprises a limiting groove opened in the inner edge of each placing frame (13), and a second cleaning plate (4054) arranged in the limiting groove, and the second cleaning plate (4054) is provided with a second magnetic block magnetically attracted to the first magnetic block, and the top of the second cleaning plate (4054) is clamped with a second cleaning cotton, when the hydraulic telescopic rod (4051) is extended towards the glass body (14) placed on the upper position, the first cleaning plate (4052) and the second cleaning plate (4054) are respectively attached to the upper and lower surfaces of the glass body (14) placed on the upper position.

6. The rotary glass cleaning machine according to claim 5, wherein: The cleaning liquid spray head (403) comprises a liquid storage tank (4031) fixed on the first transmission belt (402), and a spray head body (4032) arranged at the bottom of the liquid storage tank (4031), and the spray head body (4032) is aligned with the glass body (14) placed on the upper position and located in the forward direction of the starting position of the first cleaning plate (4052).

7. The rotary glass cleaning machine according to claim 1, wherein: And a sewage tank assembly (1) arranged at the bottom of the support (3) and placed below the adsorption frame assembly, which comprises a tank body (101), and a drain hole (102) in the tank body (101) for drainage.

8. The rotary glass cleaning machine according to claim 1, wherein: It also comprises a conveying belt assembly (2), and the conveying belt assembly (2) comprises a first mounting frame (201) and a second mounting frame (202), and the first mounting frame (201) and the second mounting frame (202) are arranged on the two sides of the tank body (101); And second rollers rotatably mounted on the first mounting frame (201) and the second mounting frame (202), respectively, and a second transmission belt (203) sleeved on the two second rollers, which is placed below the adsorption frame assembly and used for receiving and conveying the cleaned glass body (14); It also comprises a second motor component (204) arranged on the side wall of the first mounting frame (201), and the output shaft of the second motor component (204) penetrates through the mounting hole opened in the side wall of the first mounting frame (201) and is fixed with the second roller on the first mounting frame (201).