A glass washing machine
Patent Information
- Application Number
- CN202521754502.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-18
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-18
AI Technical Summary
目前,市面上的玻璃清洗机在对玻璃进行传送时,大多采用传送辊作为输送部件,这种传统的传送方式存在明显的缺陷,传送辊在传送过程中,其整个辊面与玻璃表面全面接触,由于传送辊材质多为硬质材料,且长期使用后表面易出现磨损或附着细小颗粒物,极易在输送过程中刮花玻璃表面,对玻璃的外观和质量造成损害,尤其对于高精度、高透光率要求的玻璃制品,这种损伤往往是致命的;此外,传送辊的整个辊面与玻璃接触,会导致玻璃表面的部分污渍被转移并积攒在传送辊表面;同时,长时间运行后,传送辊表面积累的灰尘也容易在与玻璃的再次接触中沾染到玻璃上,这些问题不仅增加了玻璃清洗的难度,还会导致清洗后的玻璃二次污染,大幅降低了玻璃的清洗效果,无法满足玻璃后续加工对表面洁净度的严格要求
本实用新型设置液压缸、连接板、轴管、传动轴等结构,当需要输送不同宽度的玻璃时,启动液压缸,液压缸带动连接板移动,连接板带动轴管顺着传动轴移动,从而调节两个支撑环之间的距离,以适应不同宽度的玻璃输送,大大提高了设备使用的灵活性;设置的限位盘,能够对传动时的玻璃两侧进行限位,防止玻璃在输送过程中发生倾斜,保证了玻璃输送的稳定性,且其结构简单,操作方便。
Smart Images

Figure CN224712671U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of glass processing equipment, and specifically relates to a glass cleaning machine. Background Technology
[0002] Cleaning is an important step in the glass production and processing process. Its purpose is to remove stains, dust and other impurities from the glass surface to ensure the quality of subsequent glass processing.
[0003] Problems with existing technology: Currently, most glass washing machines on the market use conveyor rollers as the conveying component when transporting glass. This traditional conveying method has obvious drawbacks. During the conveying process, the entire roller surface is in full contact with the glass surface. Since the conveyor roller is mostly made of hard materials, and its surface is prone to wear or the accumulation of fine particles after long-term use, it is very easy to scratch the glass surface during transport, damaging the appearance and quality of the glass. This damage is often fatal, especially for glass products with high precision and high light transmittance requirements. In addition, the entire roller surface is in contact with the glass, which can cause some of the dirt on the glass surface to be transferred and accumulated on the roller surface. At the same time, after long-term operation, the dust accumulated on the surface of the conveyor roller can easily be transferred to the glass upon re-contact. These problems not only increase the difficulty of glass cleaning but also lead to secondary contamination of the cleaned glass, significantly reducing the cleaning effect and failing to meet the strict surface cleanliness requirements of subsequent glass processing. Utility Model Content
[0004] The purpose of this invention is to provide a glass cleaning machine that can convey glass through contact with a rubber ring, reducing the contact area between the equipment and the glass. This reduces contamination of the glass during cleaning and improves the efficiency of the equipment.
[0005] The specific technical solution adopted by this utility model is as follows: A glass cleaning machine includes a frame, a cleaning mechanism for cleaning glass is provided on the top of the frame, a plurality of drive shafts are equidistantly arranged on the frame, and shaft tubes are symmetrically sleeved on both sides of the outer wall of the drive shafts and located inside the frame, and the shaft tubes are laterally slidably connected to the drive shafts. A support ring is provided on the outer wall of the shaft tube, and a rubber ring that contacts the glass is provided on the outer wall of the support ring. A connecting plate is rotatably installed between the outer walls of the plurality of shaft tubes, and hydraulic cylinders connected to both ends of the connecting plate are provided on both sides of the frame.
[0006] The rubber ring has a width of 15-25mm and a thickness of 10mm.
[0007] The outer surface of the rubber ring has multiple adsorption holes arranged in an equidistant array, and the depth of the adsorption holes is 5mm. The outer surface of the rubber ring is provided with protrusions at the edges of the adsorption holes.
[0008] The outer wall of the shaft tube, located on one side of the support ring, is provided with a limiting disc that limits the movement of both sides of the glass, and the outer diameter of the limiting disc is larger than the outer diameter of the support ring.
[0009] The shaft tube, support ring, and limiting plate are a stepped shaft structure and are manufactured as a single piece.
[0010] A synchronous pulley mechanism is provided between one end of the plurality of drive shafts and extending to the outside of the frame, and a motor connected to the synchronous pulley mechanism is provided on one side of the frame.
[0011] A limiting guide groove is provided on the inner side of the shaft tube, and a limiting guide rail is fixed on the outer surface of the transmission shaft and is slidably connected to the limiting guide groove.
[0012] The technical effects achieved by this utility model are as follows: This utility model incorporates a hydraulic cylinder, a connecting plate, a shaft tube, and a drive shaft. When glass of different widths needs to be conveyed, the hydraulic cylinder is activated, causing the connecting plate to move. The connecting plate then moves the shaft tube along the drive shaft, thereby adjusting the distance between the two support rings to accommodate glass of varying widths, significantly improving the flexibility of the equipment. The included limit plate can limit the movement of the glass on both sides during transmission, preventing tilting and ensuring the stability of the glass conveying process. Furthermore, its simple structure and convenient operation make it easy to use.
[0013] The rubber ring in this invention is made of a soft material, which provides excellent protection and support for the glass during transport, preventing direct contact between the glass and the drive shaft and avoiding scratches. Simultaneously, the contact area between the equipment and the glass is reduced by using the rubber ring for transport, minimizing contamination during glass cleaning and improving equipment performance. The suction holes and protrusions on the outer surface of the rubber ring further increase the friction between the rubber ring and the glass. The suction holes act like suction cups, holding the glass in place during transport and effectively preventing slippage during rinsing, thus improving the stability and effectiveness of the rinsing process. Attached Figure Description
[0014] Figure 1 This is a front view structural diagram of the present invention; Figure 2 This is a side view of the structure of this utility model; Figure 3 This is a schematic diagram of the integrated structure of the shaft tube, support ring and limiting plate of this utility model; Figure 4This is a schematic diagram of the rubber ring structure of this utility model.
[0015] The attached diagram lists the components represented by each number as follows: 1. Frame; 2. Drive shaft; 3. Synchronous pulley mechanism; 4. Motor; 5. Cleaning mechanism; 6. Hydraulic cylinder; 7. Shaft tube; 8. Limiting guide groove; 9. Support ring; 10. Rubber ring; 11. Adsorption hole; 12. Protrusion; 13. Limiting plate; 14. Connecting plate. Detailed Implementation
[0016] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.
[0017] like Figures 1-3 As shown, a glass cleaning machine includes a frame 1. A cleaning mechanism 5 for cleaning glass is provided on the top of the frame 1. Multiple drive shafts 2 are arranged equidistantly on the frame 1. Shaft tubes 7 are symmetrically sleeved on both sides of the outer wall of the drive shafts 2 and located inside the frame 1. The shaft tubes 7 are laterally slidably connected to the drive shafts 2. A support ring 9 is provided on the outer wall of the shaft tube 7. A rubber ring 10 that contacts the glass is provided on the outer wall of the support ring 9. A connecting plate 14 is rotatably installed between the outer walls of the multiple shaft tubes 7. Hydraulic cylinders 6 connected to both ends of the connecting plate 14 are provided on both sides of the frame 1. A limit guide groove 8 is opened on the inner side of the shaft tube 7. A limit guide rail that is slidably connected to the limit guide groove 8 is fixed on the outer surface of the drive shaft 2.
[0018] According to the above structure, the glass is placed on the rubber ring 10 between the two support rings 9. The rotating drive shaft 2, in conjunction with the upper limit guide groove 8 and the limit guide rail, drives the shaft tube 7 to rotate. The shaft tube 7 drives the support rings 9 and the rubber ring 10 to rotate. The rubber ring 10 moves the glass to the lower cleaning mechanism 5 for cleaning. The hydraulic cylinder 6 drives the connecting plate 14 to move, and the connecting plate 14 drives the shaft tube 7 to move along the drive shaft 2. The distance between the two support rings 9 can be adjusted as needed to accommodate glass of different widths, improving the flexibility of the equipment. The rubber ring 10, with its soft properties, easily protects the glass during transport, minimizing scratches on the glass surface. In addition, the contact between the rubber ring 10 and the glass during transport reduces the contact area between the equipment and the glass, reducing contamination of the equipment during glass cleaning and improving the equipment's performance.
[0019] like Figures 2-4As shown, the rubber ring 10 has a width of 15-25mm and a thickness of 10mm; the outer surface of the rubber ring 10 has a plurality of adsorption holes 11 arranged in an equidistant array, and the depth of the adsorption holes 11 is 5mm; the outer surface of the rubber ring 10 and the edge of the adsorption holes 11 are provided with protrusions 12.
[0020] According to the above structure, the rubber ring 10 has a flat cross-section, which increases the rubber ring 10's ability to fully contact the glass and prevents the glass from slipping. The suction hole 11 and the protrusion 12 increase the friction between the rubber ring 10 and the glass, thus improving the friction of the glass transmission. In addition, the suction hole 11 acts like a suction cup, which can hold the glass in the glass transmission process, preventing the glass from slipping during glass washing and improving the stability and washing effect of glass washing.
[0021] like Figure 3 As shown, a limiting disc 13 is provided on the outer wall of the shaft tube 7 and on one side of the support ring 9 to limit the glass on both sides. The outer diameter of the limiting disc 13 is larger than the outer diameter of the support ring 9. The structure is simple and easy to operate. It is convenient to limit the glass during transmission and prevent tilting. It is quite practical.
[0022] like Figure 3 As shown, the shaft tube 7, support ring 9 and limiting plate 13 are integrally manufactured with a stepped shaft structure, which reduces the connection gap between components, improves the overall structure's resistance to deformation, can withstand long-term high-intensity operating pressure, reduces the equipment failure rate caused by component loosening or damage, and extends the overall service life of the equipment.
[0023] like Figure 2 As shown, a synchronous wheel mechanism 3 is provided between one end of multiple drive shafts 2 and extends to the outside of the frame 1. A motor 4 connected to the synchronous wheel mechanism 3 is provided on one side of the frame 1 as the power source of the equipment, so that the synchronous wheel mechanism 3 can be rotated by the motor 4, thereby driving the glass to be conveyed.
[0024] The working principle of this utility model is as follows: In use, the glass is placed on the rubber ring 10 between the two support rings 9. The motor 4 is started, and the motor 4 drives the synchronous wheel mechanism 3 to rotate. The synchronous wheel mechanism 3 drives multiple transmission shafts 2 to rotate synchronously. Since the limiting guide rail on the transmission shaft 2 is slidably connected to the limiting guide groove 8 on the inner side of the shaft tube 7, the rotation of the transmission shaft 2 will drive the shaft tube 7 to rotate together. The shaft tube 7 will then drive the support rings 9 and the rubber ring 10 to rotate. The rubber ring 10 contacts the glass, and under the friction and adsorption of the adsorption hole 11, it drives the glass to move. When the glass moves to the bottom of the cleaning mechanism 5, the cleaning mechanism 5 cleans the glass. If it is necessary to transport glass of different widths, the hydraulic cylinder 6 is started. The hydraulic cylinder 6 drives the connecting plate 14 to move. The connecting plate 14 drives the shaft tube 7 to slide laterally along the transmission shaft 2, thereby adjusting the distance between the two support rings 9 to adapt to the width of the glass. During the glass conveying process, the limiting plate 13 limits the glass on both sides to prevent it from tilting. The protrusions 12 and suction holes 11 on the outer surface of the rubber ring 10 increase the friction between it and the glass. The suction holes 11 can also hold the glass in place, preventing it from sliding during cleaning and ensuring smooth cleaning.
[0025] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.
Claims
1. A glass cleaning machine, comprising a frame (1), wherein a cleaning mechanism (5) for cleaning glass is provided on the top of the frame (1), characterized in that: Multiple drive shafts (2) are equidistantly arranged on the frame (1). Shaft tubes (7) are symmetrically sleeved on both sides of the outer wall of the drive shaft (2) and inside the frame (1). The shaft tubes (7) are slidably connected to the drive shaft (2) laterally. A support ring (9) is provided on the outer wall of the shaft tube (7). A rubber ring (10) that contacts the glass is provided on the outer wall of the support ring (9). A connecting plate (14) is rotatably installed between the outer walls of the multiple shaft tubes (7). A hydraulic cylinder (6) connected to both ends of the connecting plate (14) is provided on both sides of the frame (1).
2. The glass washing machine according to claim 1, characterized in that: The rubber ring (10) has a width of 15-25 mm and a thickness of 10 mm.
3. A glass washing machine according to claim 1, characterized in that: The outer surface of the rubber ring (10) has a plurality of adsorption holes (11) arranged at equal intervals, and the depth of the adsorption holes (11) is 5 mm. The outer surface of the rubber ring (10) and the edge of the adsorption holes (11) are provided with protrusions (12).
4. A glass washing machine according to claim 1, characterized in that: The outer wall of the shaft tube (7) and located on one side of the support ring (9) is provided with a limiting disk (13) for limiting the two sides of the glass, and the outer diameter of the limiting disk (13) is larger than the outer diameter of the support ring (9).
5. A glass washing machine according to claim 1, characterized in that: The shaft tube (7), support ring (9) and limiting plate (13) are a stepped shaft structure and are made as a single unit.
6. A glass washing machine according to claim 1, characterized in that: A synchronous wheel mechanism (3) is provided between one end of the plurality of drive shafts (2) and extending to the outside of the frame (1), and a motor (4) connected to the synchronous wheel mechanism (3) is provided on one side of the frame (1).
7. A glass washing machine according to claim 1, characterized in that: The inner side of the shaft tube (7) is provided with a limiting guide groove (8), and the outer surface of the transmission shaft (2) is fixed with a limiting guide rail that is slidably connected to the limiting guide groove (8).