A cleaning device for refrigerator glass partition production

CN224599987UActive Publication Date: 2026-08-07ANHUI CHUNAN GLASS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI CHUNAN GLASS TECH CO LTD
Filing Date
2025-08-22
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0004]本实用新型的目的是针对现有的技术存在上述问题,提出了一种冰箱玻璃隔板生产用清洗装置,该实用新型要解决的技术问题是:通常单次只能对玻璃隔板的一侧进行清洗,从而导致操作人员需要搬动和翻转玻璃隔板,增加了劳动强度,以至于工人容易过度疲劳和人力资源的浪费

Benefits of technology

1、本实用新型由于采用了通过双组清洁辊对玻璃隔板表面进行清洗的技术方案,所以可以确保单次能够对玻璃隔板的两侧进行清洗,从而有效解决了单次只能对玻璃隔板的一侧进行清洗,从而导致操作人员需要搬动和翻转玻璃隔板,增加了劳动强度,以至于工人容易过度疲劳和人力资源的浪费问题,清洗仓在靠近导料口的一侧内部对称安装有两个支撑框,两个支撑框内部均转动连接有清洗辊,因为玻璃隔板在移动的过程中会与清洗辊进行接触,所以通过清洗辊可以对玻璃隔板表面进行清洗,在多个清洗辊的顶部均安装有齿轮,且多个齿轮表面配合有同一齿条,在齿条的一侧安装有调节框,而调节框是通过调节杆与调节盘进行连接的,因为调节杆是偏离圆心进行设置的,所以当第一电机带动调节盘进行转动时,调节杆可以带动齿条进行移动,以此达到旋转清洗辊的目的,通过旋转清洗辊,可以确保玻璃隔板表面能够清洗得更加彻底。

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Abstract

The utility model provides a kind of cleaning device for refrigerator glass partition production, belong to refrigerator technical field, it solves the technical problem that the glass partition can only be washed on one side usually single time, so as to cause operator to need to move and overturn glass partition, increase labor intensity, so that worker is prone to excessive fatigue and the waste of human resources.It is a kind of cleaning device for refrigerator glass partition production, including cleaning bin, multiple material guiding mouths are set on the side of cleaning bin, and multiple material guiding mouths are set in pairs, and the bottom of cleaning bin is provided with flow guide, multiple cleaning rollers are rotatably connected on the side of two support frames, and multiple cleaning rollers are set in cooperation with material guiding mouth, gear is fixedly sleeved on the top of multiple cleaning rollers, and multiple gears are provided with rotating mechanism for rotating cleaning roller.In the utility model, through the setting of cleaning roller, it can ensure that both sides of glass partition can be washed single time.
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Description

Technical Field

[0001] This utility model belongs to the field of refrigerator technology, and relates to glass partitions, particularly a cleaning device for the production of refrigerator glass partitions. Background Technology

[0002] The cleaning unit for refrigerator glass shelves is a specially designed piece of equipment intended to efficiently clean glass shelves to ensure their surfaces are clean, free of dirt and grease, thereby improving product quality and appearance. This unit typically features high-efficiency cleaning, a high degree of automation, resource conservation, adaptability, and safety. It reduces manual intervention, optimizes resource use, and can be adjusted for different shelf specifications to ensure operator safety. This cleaning unit is crucial in refrigerator production lines, helping to reduce defect rates and enhance the company's competitiveness.

[0003] However, some existing cleaning devices used in refrigerator glass shelf production can usually only clean one side of the glass shelf at a time. This requires operators to move and flip the glass shelf, increasing labor intensity and leading to worker fatigue and wasted human resources. Therefore, this problem needs to be solved. Utility Model Content

[0004] The purpose of this utility model is to address the aforementioned problems in existing technologies by proposing a cleaning device for refrigerator glass partition production. The technical problem this utility model aims to solve is that, typically, only one side of the glass partition can be cleaned at a time, which requires operators to move and flip the glass partition, increasing labor intensity and leading to worker fatigue and waste of human resources.

[0005] The objective of this utility model can be achieved through the following technical solutions: A cleaning device for refrigerator glass partition production includes a cleaning chamber. Multiple material guide ports are provided on one side of the cleaning chamber, arranged in pairs. A flow guide port is provided at the bottom of the cleaning chamber. Two support frames are symmetrically fixedly connected to the side of the cleaning chamber near the multiple material guide ports. Multiple cleaning rollers are rotatably connected to one side of each of the two support frames, and the multiple cleaning rollers are configured to cooperate with the material guide ports. Gears are fixedly sleeved on the top of each of the multiple cleaning rollers, and a rotating mechanism for rotating the cleaning rollers is provided on the surface of each of the multiple gears. Adjustment frames are fixedly connected to the top of each of the multiple support frames, and an adjustment mechanism for adjusting the cleaning rollers is provided on one side of each of the multiple adjustment frames.

[0006] The working principle of this utility model is as follows: two support frames are symmetrically installed inside the cleaning chamber on the side near the feed inlet. Cleaning rollers are rotatably connected inside the two support frames. Because the glass partition will come into contact with the cleaning rollers during the movement, the surface of the glass partition can be cleaned by the cleaning rollers. Gears are installed on the top of multiple cleaning rollers. The purpose of rotating the cleaning rollers can be achieved by the gears. By rotating the cleaning rollers, it can be ensured that the surface of the glass partition can be cleaned more thoroughly.

[0007] The rotating mechanism includes a slide rod, which is fixedly connected to one side of the cleaning chamber. A rack is slidably fitted on the surface of the slide rod, and the rack and gear are configured to cooperate with each other. An adjustment frame is fixedly connected to the surface of the rack near the gear. A first motor is fixedly connected to the top of the adjustment frame. The output shaft of the first motor is fixedly connected to an adjustment disc via a coupling. An adjustment rod is fixedly connected to the bottom of the adjustment disc, and the adjustment rod is offset from the center. The adjustment rod is slidably connected inside the adjustment frame.

[0008] The above structure allows the cleaning roller to rotate, ensuring that the glass partition surface can be cleaned more thoroughly.

[0009] The adjustment mechanism includes a rotating shaft rotatably connected to one side of the cleaning chamber. The rotating shaft has a bidirectional threaded groove on its surface. Two adjustment brackets are slidably sleeved on the surface of the rotating shaft. Each of the two adjustment brackets has a lead screw nut inside the side near the bidirectional threaded groove, and the two lead screw nuts are mutually engaged with the bidirectional threaded groove. Two support rods are symmetrically fixedly connected inside the side of the cleaning chamber near the adjustment brackets. The two adjustment brackets are slidably sleeved on the surfaces of the two support rods. A second motor is fixedly connected to the surface of the cleaning chamber near the rotating shaft. The rotating shaft is fixedly connected to the output shaft of the second motor. A moving mechanism for moving the glass partition is provided inside the side of the cleaning chamber near the guide port.

[0010] The above structure allows for adjustment of the spacing between the cleaning rollers, ensuring that it can adapt to glass partitions of different thicknesses.

[0011] The moving mechanism includes multiple moving rollers, all of which are rotatably connected inside the cleaning chamber. A third motor is fixedly connected to the surface of the cleaning chamber near the moving rollers. One of the moving rollers is fixedly connected to the output shaft of the third motor. The multiple moving rollers are arranged in pairs. Synchronous pulleys are fixedly connected to the surface of the multiple sets of moving rollers away from the third motor. The same synchronous belt is sleeved on the surface of the two synchronous pulleys. Guide pipes are fixedly connected inside the cleaning chamber near the multiple sets of guide ports. Multiple nozzles are fixedly connected to the bottom of the multiple guide pipes. One end of the multiple guide pipes is fixedly connected to the same connector, which is fixedly connected to one side of the cleaning chamber.

[0012] The above structure allows the glass partition to be moved.

[0013] Compared with the prior art, the cleaning device for refrigerator glass partition production of this utility model has the following advantages: 1. This utility model employs a dual-set cleaning roller system to clean the surface of the glass partition. This ensures that both sides of the glass partition can be cleaned in a single operation, effectively solving the problem of only being able to clean one side of the glass partition at a time. This previously required operators to move and flip the glass partition, increasing labor intensity, leading to worker fatigue and wasting human resources. The cleaning chamber has two symmetrically installed support frames on the side near the feed inlet. Cleaning rollers are rotatably connected inside each support frame. As the glass partition moves, it comes into contact with the cleaning rollers, thus cleaning the surface of the glass partition. Gears are installed on the top of multiple cleaning rollers, and multiple gears are fitted with the same rack. An adjustment frame is installed on one side of the rack, and the adjustment frame is connected to an adjustment disc via an adjustment rod. Because the adjustment rod is offset from the center, when the first motor drives the adjustment disc to rotate, the adjustment rod can move the rack, thereby rotating the cleaning rollers. Rotating the cleaning rollers ensures a more thorough cleaning of the glass partition surface. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of a cleaning device for producing refrigerator glass partitions according to this utility model; Figure 2 This is a schematic diagram of the internal structure of a cleaning device for producing refrigerator glass partitions according to this utility model; Figure 3 This is a schematic diagram of the adjustment mechanism of a cleaning device for producing refrigerator glass partitions according to this utility model; Figure 4 yes Figure 3 Enlarged structural diagram at point A in the diagram; Figure 5 This is a schematic diagram of the rotating mechanism of a cleaning device for producing refrigerator glass partitions according to this utility model; Figure 6 yes Figure 5 Enlarged structural diagram at point B in the diagram; Figure 7 yes Figure 5 Enlarged structural diagram at point C; Figure 8 This is a schematic diagram of the moving mechanism of a cleaning device for producing refrigerator glass partitions according to this utility model; Figure 9 yes Figure 8 A magnified structural diagram at point D in the diagram.

[0015] In the diagram: 1. Cleaning chamber; 2. Cleaning roller; 3. First motor; 4. Connector; 5. Moving roller; 101. Feed inlet; 102. Flow outlet; 201. Support frame; 202. Adjusting frame; 203. Rotating shaft; 204. Bidirectional threaded groove; 205. Screw nut; 206. Gear; 207. Support rod; 208. Second motor; 301. Rack; 302. Adjusting frame; 303. Adjusting disc; 304. Adjusting rod; 305. Slide rod; 401. Flow pipe; 402. Nozzle; 501. Third motor; 502. Synchronous pulley; 503. Synchronous belt. Detailed Implementation

[0016] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0017] like Figure 1 - Figure 9 As shown, a cleaning device for refrigerator glass partition production includes a cleaning chamber 1. Multiple feed inlets 101 are provided on one side of the cleaning chamber 1, arranged in pairs. A flow outlet 102 is provided at the bottom of the cleaning chamber 1. Two support frames 201 are symmetrically fixedly connected to the side of the cleaning chamber 1 closest to the feed inlets 101. Multiple cleaning rollers 2 are rotatably connected to one side of each support frame 201, and the multiple cleaning rollers 2 are configured to cooperate with the feed inlets 101. Gears 206 are fixedly fitted on the top of each of the multiple cleaning rollers 2, and a rotating mechanism for rotating the cleaning rollers 2 is provided on the surface of each of the multiple gears 206. An adjusting frame 202 is fixedly connected to the top of each of the multiple support frames 201, and an adjusting mechanism for adjusting the cleaning rollers 2 is provided on one side of each of the multiple adjusting frames 202.

[0018] Preferably, the rotating mechanism includes a slide rod 305, which is fixedly connected to one side of the cleaning chamber 1. A rack 301 is slidably sleeved on the surface of the slide rod 305, and the rack 301 and the gear 206 are mutually engaged. An adjustment frame 302 is fixedly connected to the surface of the rack 301 near the gear 206. A first motor 3 is fixedly connected to the top of the adjustment frame 302. The output shaft of the first motor 3 is fixedly connected to an adjustment disc 303 through a coupling. An adjustment rod 304 is fixedly connected to the bottom of the adjustment disc 303, and the adjustment rod 304 is offset from the center. The adjustment rod 304 is slidably connected inside the adjustment frame 302.

[0019] Preferably, the adjustment mechanism includes a rotating shaft 203, which is rotatably connected to one side of the cleaning chamber 1. The rotating shaft 203 has a bidirectional threaded groove 204 on its surface. Two adjustment brackets 202 are slidably sleeved on the surface of the rotating shaft 203. Each of the two adjustment brackets 202 has a lead screw nut 205 inside the side near the bidirectional threaded groove 204, and the two lead screw nuts 205 are mutually engaged with the bidirectional threaded groove 204. Two support rods 207 are symmetrically fixedly connected inside the side of the cleaning chamber 1 near the adjustment brackets 202. The two adjustment brackets 202 are slidably sleeved on the surface of the two support rods 207. A second motor 208 is fixedly connected to the surface of the cleaning chamber 1 near the rotating shaft 203. The rotating shaft 203 is fixedly connected to the output shaft of the second motor 208. A moving mechanism for moving the glass partition is provided inside the side of the cleaning chamber 1 near the guide port 102.

[0020] Furthermore, the moving mechanism includes multiple moving rollers 5, all of which are rotatably connected inside the cleaning chamber 1. A third motor 501 is fixedly connected to the surface of the cleaning chamber 1 near the moving rollers 5. One of the moving rollers 5 is fixedly connected to the output shaft of the third motor 501. The multiple moving rollers 5 are arranged in pairs. Synchronous pulleys 502 are fixedly connected to the surface of the multiple sets of moving rollers 5 away from the third motor 501. The same synchronous belt 503 is sleeved on the surface of the two synchronous pulleys 502. Guide pipes 401 are fixedly connected to the interior of the cleaning chamber 1 near the multiple sets of guide ports 101. Multiple nozzles 402 are fixedly connected to the bottom of the multiple guide pipes 401. The same connector 4 is fixedly connected to one end of the multiple guide pipes 401. The connector 4 is fixedly connected to one side of the cleaning chamber 1.

[0021] The working principle of this utility model is as follows: In use, the glass partition to be cleaned is first placed into the cleaning chamber 1 through the feed inlet 101. Multiple moving rollers 5 are installed inside the cleaning chamber 1, arranged in pairs. Each pair of moving rollers 5 is connected by a synchronous belt 503. Therefore, when the third motor 501 drives one of the moving rollers 5 to rotate, all moving rollers 5 will rotate, thus moving the glass partition. Simultaneously, the nozzles 402 are activated to spray liquid onto the surface of the glass partition. Two support frames 201 are symmetrically installed inside the cleaning chamber 1 on the side near the feed inlet 101. Each support frame 201 is rotatably connected to a cleaning nozzle. The cleaning roller 2 is used because the glass partition comes into contact with the cleaning roller 2 during its movement. The cleaning roller 2 can clean the surface of the glass partition. Gears 206 are installed on the top of multiple cleaning rollers 2, and the surfaces of multiple gears 206 are fitted with the same rack 301. An adjustment frame 302 is installed on one side of the rack 301. The adjustment frame 302 is connected to the adjustment plate 303 through an adjustment rod 304. Because the adjustment rod 304 is set off-center, when the first motor 3 drives the adjustment plate 303 to rotate, the adjustment rod 304 can drive the rack 301 to move, thereby achieving the purpose of rotating the cleaning roller 2. By rotating the cleaning roller 2, it can be ensured that the surface of the glass partition can be cleaned more thoroughly.

[0022] In summary, in this utility model, the cleaning chamber 1 has two support frames 201 symmetrically installed inside on the side near the feed inlet 101. The two support frames 201 are rotatably connected to the cleaning rollers 2. Since the glass partition will come into contact with the cleaning rollers 2 during the movement, the surface of the glass partition can be cleaned by the cleaning rollers 2.

[0023] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

Claims

1. A cleaning device for producing refrigerator glass partitions, comprising a cleaning chamber (1), characterized in that, The cleaning chamber (1) has multiple feed inlets (101) on one side, and the multiple feed inlets (101) are arranged in pairs. The bottom of the cleaning chamber (1) has a flow outlet (102). The cleaning chamber (1) has two support frames (201) symmetrically fixedly connected inside the side of the multiple feed inlets (101). Multiple cleaning rollers (2) are rotatably connected to one side of the two support frames (201), and the multiple cleaning rollers (2) are all configured to cooperate with the feed inlets (101). Gears (206) are fixedly sleeved on the top of the multiple cleaning rollers (2), and the surface of the multiple gears (206) is provided with a rotating mechanism for rotating the cleaning rollers (2). Adjusting frames (202) are fixedly connected to the top of the multiple support frames (201), and adjusting mechanisms for adjusting the cleaning rollers (2) are provided on one side of the multiple adjusting frames (202).

2. The cleaning device for producing refrigerator glass partitions according to claim 1, characterized in that, The rotating mechanism includes a slide rod (305), which is fixedly connected to one side of the cleaning chamber (1). A rack (301) is slidably sleeved on the surface of the slide rod (305), and the rack (301) and the gear (206) are configured to cooperate with each other. An adjustment frame (302) is fixedly connected to the surface of the rack (301) near the gear (206). The adjustment frame (202) is fixedly connected to the top of the adjustment frame (302), and a first motor (3) is fixedly connected to the top of the adjustment frame (302). The output shaft of the first motor (3) is fixedly connected to an adjustment disc (303) through a coupling. An adjustment rod (304) is fixedly connected to the bottom of the adjustment disc (303), and the adjustment rod (304) is offset from the center. The adjustment rod (304) is slidably connected inside the adjustment frame (302).

3. The cleaning device for refrigerator glass partition production according to claim 1, characterized in that, The adjustment mechanism includes a rotating shaft (203), which is rotatably connected to one side of the cleaning chamber (1). The rotating shaft (203) has a bidirectional threaded groove (204) on its surface. Two adjustment brackets (202) are slidably sleeved on the surface of the rotating shaft (203). Both adjustment brackets (202) have a screw nut (205) inside the side of the side of the side of the bidirectional threaded groove (204), and both screw nuts (205) are configured to cooperate with the bidirectional threaded groove (204). Two support rods (207) are symmetrically fixedly connected inside the side of the cleaning chamber (1) near the adjustment brackets (202).

4. The cleaning device for producing refrigerator glass partitions according to claim 3, characterized in that, Both adjustment frames (202) are slidably sleeved on the surfaces of the two support rods (207). A second motor (208) is fixedly connected to the surface of the cleaning chamber (1) near the rotating shaft (203). The rotating shaft (203) is fixedly connected to the output shaft of the second motor (208). A moving mechanism for moving the glass partition is provided inside the cleaning chamber (1) near the guide port (102).

5. The cleaning apparatus for producing refrigerator glass partitions according to claim 4, characterized in that, The moving mechanism includes multiple moving rollers (5), all of which are rotatably connected to the inside of the cleaning chamber (1). A third motor (501) is fixedly connected to the surface of the cleaning chamber (1) near the moving rollers (5). One of the moving rollers (5) is fixedly connected to the output shaft of the third motor (501). The multiple moving rollers (5) are arranged in pairs. A synchronous pulley (502) is fixedly connected to the surface of the multiple sets of moving rollers (5) away from the third motor (501). The same synchronous belt (503) is sleeved on the surface of the two synchronous pulleys (502).

6. The cleaning apparatus for producing refrigerator glass partitions according to claim 1, characterized in that, The cleaning chamber (1) is fixedly connected to a guide pipe (401) on the side near the multiple sets of feed inlets (101). Multiple nozzles (402) are fixedly connected to the bottom of the multiple guide pipes (401). The same connector (4) is fixedly connected to one end of the multiple guide pipes (401). The connector (4) is fixedly connected to one side of the cleaning chamber (1).